{"paper_id":"4175534d-3256-484d-afde-d2ee81c66da5","body_text":"Novel Association of Lyme Disease, Age, and Atopic Dermatitis | Research Square window.SnipcartSettings = { analytics: { enabled: false } }; (function() { var accessVector = localStorage.getItem('access_vector') || ''; window.dataLayer = window.dataLayer || []; if (accessVector) { window.dataLayer.push({ user: { profile: { profileInfo: { snid: accessVector } } } }); } })(); (function(w,d,s,l,i){w[l]=w[l]||[];w[l].push({'gtm.start':new Date().getTime(),event:'gtm.js'});var f=d.getElementsByTagName(s)[0],j=d.createElement(s),dl=l!='dataLayer'?'&l='+l:'';j.async=true;j.src='https://www.googletagmanager.com/gtm.js?id='+i+dl;f.parentNode.insertBefore(j,f);})(window,document,'script','dataLayer','GTM-K279D39R'); Browse Preprints In Review Journals COVID-19 Preprints AJE Video Bytes Research Tools Research Promotion AJE Professional Editing AJE Rubriq About Preprint Platform In Review Editorial Policies Our Team Advisory Board Help Center Sign In Submit a Preprint Cite Share Download PDF Research Novel Association of Lyme Disease, Age, and Atopic Dermatitis Brandon T Lee, Sarah Galloway, Satu Strausz, Paige Hansen, Laughing Bear Torrez-Dulgeroff, and 10 more This is a preprint; it has not been peer reviewed by a journal. https://doi.org/ 10.21203/rs.3.rs-1316212/v1 This work is licensed under a CC BY 4.0 License Status: Posted Version 1 posted You are reading this latest preprint version Abstract Background Borrelia burgdorferi is a bacterial spirochete that can cause Lyme disease after infecting a susceptible host. Immune responses to the bacteria are highly variable and host specific. The murine substrain, C3H/HeJ, is one of the most frequently utilized mouse models for Lyme disease. In this study, we sought to investigate the correlation of age with onset and severity of dermatitis, both in C3H/HeJ mice infected with B. burgdorferi as well as humans who have had a diagnosis of Lyme disease. Methods Female C3H/HeJ mice aged 6-8 weeks, 1 year, or 2 years were infected intraperitoneally with 10 5 B. burgdorferi . Dermatitis of the tail was evaluated by gross examination and histology. Human data via electronic health records of 342,499 Finnish individuals was tested and analyzed for associations between Lyme disease and atopic dermatitis. Results Dermatitis worsened over the course of untreated infection, with ulceration, hemorrhaging, flaking, hair loss, and dark lesions as well as spongiosis and acanthosis. These features of dermatitis were present in infected mice after 1 year of age. This relationship among Lyme disease, atopic dermatitis, and host age seen in the C3H/HeJ mouse model is consistent with a large pool (342,499) of human epidemiological data from Finland. We identified 5,248 individuals with Lyme disease and 17,233 with atopic dermatitis in FinnGen. Retrospective analysis shows Lyme disease is associated with atopic dermatitis (OR = 1.91 [1.68 -2.37], P < 2e −16 ). More visits due to Lyme disease complications (3 or more visits versus 1 visit) were associated with atopic dermatitis (OR = 2.19 [1.35-3.55], P = 0.0014) and risk of developing atopic dermatitis over time (HR=2.26 [1.54-3.95], P = 0.0017). Conclusion Data from mice and humans reveal a novel relationship among Lyme disease, age, and atopic dermatitis. Through defined pathological scoring, we demonstrate the onset of murine atopic dermatitis with B. burgdorferi infection, which is further exacerbated by host age at time of infection. In humans, a diagnosis of Lyme disease in FinnGen was associated with atopic dermatitis and further research is warranted to establish causation. Lyme disease atopic dermatitis histology pathology allergy skin murine model Borrelia burgdorferi spirochete borreliosis Figures Figure 1 Figure 2 Figure 3 Figure 4 Figure 5 Introduction Lyme disease (LD) is the most prevalent tick-borne illness caused by infection with the spirochete Borrelia burgdorferi . LD is highly prevalent in the Northern hemisphere and especially endemic in woody regions with increased tick exposure. 1 Pathogenesis of LD is classified into three stages: early localized, early disseminated, and late disseminated. 2 A classic identifier which can be used to diagnose early localized LD is an erythema migrans which can develop in the first several weeks of infection. Patients may present with several different rash manifestations, including the hallmark \"bulls-eye\", or no rash at all. 3,4 Progression to the early disseminated stage is characterized by various pathologies of the integumentary, musculoskeletal and nervous systems. 1,5 If left untreated, late disseminated LD may present with cutaneous manifestations such as acrodermatitis chronica atrophicans, which may show variable atrophy and discoloration of skin. 6 C3H/HeJ mice are commonly used as a model for LD because they develop several clinical features similar to human LD upon infection with B. burgdorferi , including carditis and arthritis. 7 Compared to similar strains, C3H/HeJ mice exhibit chronic disease persistence with a higher degree of bacterial dissemination. 8 This mouse strain developed a spontaneous mutation in the lipopolysaccharide (LPS) domain of the Toll-Like Receptor 4 (TLR4) gene. Mice of the C3H substrain typically exhibit higher disease persistence compared to other strains, whether TLR4 is functional (C3H/HeN), or non-functional (C3H/HeJ), indicating that TLR4 recognition may not be involved in clearance of B. burgdorferi . 9 TLR4, which mediates pathogen sensing via recognition of LPS/endotoxin, is found in skin cells with aberrant expression in dermatitis. 10 In mice challenged with the hapten, 2,4-dinitrochlorobenzene (DNCB), TLR4 knockout (KO) mice developed more severe atopic dermatitis than wild-type (WT) mice and produced high levels of inflammatory cytokines associated with Type 2 Helper T-cell (T H 2) responses. 11 Interestingly, over the course of our studies on untreated long-term infection models of Lyme disease we noticed dermatitis with flaky lesions on the tail skin of C3H/HeJ mice after a year of infection with B. burgdorferi . However, the tail is not typically an organ of research interest and the cause of this dermatitis was unknown. Mouse studies in melanocyte pigmentation and psoriasis noted the similarity of epidermal layers between mouse tail skin and human skin, indicating the promising utility of the mouse tail as a model for pathology of the human epidermis. 12,13 Atopic dermatitis (AD) is a chronic, inflammatory skin disease with usual onset occurring during childhood. 14 This condition is characterized by pruritic, flaky lesions of the skin, hyperactive T H 2-mediated immune responses, and relapsing episodes of skin inflammation. 15 Symptoms vary widely across individual patients with severity dependent on several genetic and environmental factors. 16,17 Skin biopsies from patients with AD typically show varying degrees of spongiosis, acanthosis, and a superficial perivascular inflammatory infiltrate. 18 Spongiosis is characterized by intraepidermal and intercellular edema which may visualized as increased space between epidermal keratinocytes on Hematoxylin and Eosin (H&E) stained histologic sections. 18 Acanthosis is described as epidermal thickening. 19 The perivascular inflammatory infiltrate (PVI) in atopic dermatitis is typically found in the superficial dermis and comprised of lymphocytes and histiocytes. 20 Mast cells (MC) also may infiltrate the dermal layers of patients with AD, similar to individuals with inflammatory allergic responses. 16,21 However, a study comparing the inflammatory response to airway irritation in different mouse strains found that C3H/HeJ mice do not exhibit PVI in the airway, despite expected levels of spongiosis and acanthosis. 19 Furthermore, studies indicate C3H/HeJ mice present with PVI in the dura mater and ears, but less is known in the tail. 22,23 Through histological analysis of phenotypic tails from B. burgdorferi -infected mice, we define a scoring method to classify severity of presumed AD based on levels of spongiosis, acanthosis, and mast cell recruitment to the skin co-occurring with gross pathologic features of the tail exterior. These scores show a significant pattern in severity of Lyme disease-associated atopic dermatitis associated with age. Furthermore, human epidemiological data from FinnGen, a large nationwide network of Finnish biobanks, support the findings we observe in the mouse model, showing a significant association between diagnoses of LD and AD. Methods Mice Female C3H/HeJ mice were provided by Jackson Laboratories (Bar Harbor, ME) at ages of 6 weeks, 8 weeks, 1 year, or 2 years (n = 35). Experimental mice were infected with 10 5 x B. burgdorferi spirochetes at 100 microliters (𝜇L) from a 7-day culture via intraperitoneal needle injection. All infected mice (n = 14) were age-matched to female, uninfected C3H/HeJ control mice (n = 18) that received a vehicle control of 100𝜇L of sterile Phosphate Buffered Saline (PBS) via intraperitoneal needle injection. Four mice expired prior to the completion of the experiment referenced in Figure 2 , including uninfected 2 year (n = 2), uninfected 1 year (n = 1), and infected 1 year (n = 1). Humane euthanasia occurred either 2 months or 24 months post-injection for all experimental and control mice (n = 31) by 5% isoflurane vaporizer with active scavenging. Animal studies were performed at the Stanford School of Medicine Association for Assessment and Accreditation of Laboratory Animal Care International (AAALAC) accredited Rodent Animal Facility (Palo Alto, CA). All procedures and care guidelines were approved by the Stanford University Administrative Panel on Laboratory Animal Care (Protocol #30109). Borrelia burgdorferi B31A3-GFP (Green Fluorescent Protein) B. burgdorferi were gifted by Dr. Jayakumar Rajadas of Stanford in 10 7 cells/mL aliquots and stored at -80º Celsius (C). 24 The spirochetes were thawed and cultured in 50 milliliter (mL) conical tubes (Corning) containing 50 mL Barbour-Stonner-Kelly with 4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid (HEPES) buffer media (BSK-H) complete with 6% rabbit serum (Millipore Sigma). Cultures were incubated at 37ºC in 5% carbon dioxide for 7 days. On the same day as in vivo infection, bacterial concentration was determined by Becton Dickinson (BD) LSRFortessa Flow Cytometer and cultures were adjusted to desired working concentration using PBS. Histology Whole mouse tails were collected at sacrifice and fixed with 4% paraformaldehyde (PFA) for 24 hours before they were transferred to 70% ethanol. All subsequent tissue processing was outsourced to Histowiz (Brooklyn, NY). Tails were cut to show transverse cross sections of the most cranial, caudal, or medial region. Tissue was then stained with either H&E or Cluster of Differentiation 117 (CD117) antibody, a mast cell marker. All investigators and consulting pathologists were blinded for initial analyses to facilitate unbiased qualitative observations. Pathologists performed subsequent unblinded analysis of tail phenotypes utilizing recommendations set by the International Harmonization of Nomenclature and Diagnostic Criteria for Lesions in Rats and Mice (inHAND) Criteria. 25 Pathology Scoring & Quantification Gross examination of the tails and microscopic analysis (Leica M205 FA) was performed to classify atopic dermatitis severity through a defined external scoring system from 0 to 5 based on increasing severity, with 5 being the most severe. Each progressively higher score includes pathologies of the previous tier. The parameters of this scale were gathered from previous studies of mouse phenotypes and initial analyses were performed blinded. See 6 external categories below (Table 1 ): Table 1 External Pathology Scoring Tail External Pathology Scoring & Quantification Score Description 0 Normal 1 Areas of disorganized hair growth 2 Hair loss and dark lesions 3 Flaking with complete hair loss and dark lesions 4 Ulceration, hemorrhaging with flaking, hair loss, and dark lesions 5 Damaged distal tip of tail with ulceration, hemorrhaging, flaking, hair loss, and dark lesions Histology of the tails, as previously described, was used to classify severity of clinical features of atopic dermatitis through an internal scoring system. Spongiosis was scored in a binary fashion and acanthosis of the epidermis was classified below (Table 2 ): Table 2 Internal Pathology Scoring Tail Internal Histology Scoring & Quantification Spongiosis 0 Absent 1 Present Acanthosis of the epidermis 0 Normal 1 5 to 10 keratinocytes 2 11-14 keratinocytes 3 15 or more keratinocytes Histologic scoring utilized the cranial cross section of each tail to maintain consistency across samples. Initial analyses were performed blinded with pathologist consultation, and identified variable degrees of spongiosis and acanthosis. For each mouse, internal scores were summated and graphed against their respective external scores. FinnGen FinnGen is a large-scale study aiming to genotype 500,000 Finnish participants recruited from hospital samples as well as prospective and retrospective epidemiological and disease-based cohorts. This data is combined with longitudinal registries that record phenotypes and health events over the entire lifespan including the National Hospital Discharge Registry (inpatient and outpatient), Causes of Death Registry, the National Infectious Diseases Registry, Cancer Registry, Primary Health Care Registry (outpatient) and Drug Reimbursement Registry. This study used data from FinnGen Data Freeze 8, which includes 342,499 individuals. We used data from the hospital inpatient, outpatient, primary outpatient, and drug reimbursement registries with International Classification of Diseases (ICD) codes for LD (ICD-10: A69.2, ICD-9: 1048A) and AD (ICD-10: L20, ICD-9: 6918 (6918X excluded), ICD-8: 691). We also retreicved information of sex, age at diagnosis, current age, and cohort. Patients and control subjects in FinnGen provided informed consent for biobank research, based on the Finnish Biobank Act. Alternatively, separate research cohorts, collected prior the Finnish Biobank Act came into effect (in September 2013) and start of FinnGen (August 2017), were collected based on study-specific consents and later transferred to the Finnish biobanks after approval by Fimea (Finnish Medicines Agency), the National Supervisory Authority for Welfare and Health. Recruitment protocols followed the biobank protocols approved by Fimea. The Coordinating Ethics Committee of the Hospital District of Helsinki and Uusimaa (HUS) statement number for the FinnGen study is Nr HUS/990/2017. The FinnGen study is approved by Finnish Institute for Health and Welfare (permit numbers: THL/2031/6.02.00/2017, THL/1101/5.05.00/2017, THL/341/6.02.00/2018, THL/2222/6.02.00/2018, THL/283/6.02.00/2019, THL/1721/5.05.00/2019 and THL/1524/5.05.00/2020), Digital and population data service agency (permit numbers: VRK43431/2017-3, VRK/6909/2018-3, VRK/4415/2019-3), the Social Insurance Institution (permit numbers: KELA 58/522/2017, KELA 131/522/2018, KELA 70/522/2019, KELA 98/522/2019, KELA 134/522/2019, KELA 138/522/2019, KELA 2/522/2020, KELA 16/522/2020), Findata permit numbers THL/2364/14.02/2020, THL/4055/14.06.00/2020,,THL/3433/14.06.00/2020, THL/4432/14.06/2020, THL/5189/14.06/2020, THL/5894/14.06.00/2020, THL/6619/14.06.00/2020, THL/209/14.06.00/2021, THL/688/14.06.00/2021, THL/1284/14.06.00/2021, THL/1965/14.06.00/2021, THL/5546/14.02.00/2020, THL/2658/14.06.00/2021, THL/4235/14.06.00/2021 and Statistics Finland (permit numbers: TK-53-1041-17 and TK/143/07.03.00/2020 (earlier TK-53-90-20) TK/1735/07.03.00/2021). The Biobank Access Decisions for FinnGen samples and data utilized in FinnGen Data Freeze 8 include: THL Biobank BB2017_55, BB2017_111, BB2018_19, BB_2018_34, BB_2018_67, BB2018_71, BB2019_7, BB2019_8, BB2019_26, BB2020_1, Finnish Red Cross Blood Service Biobank 7.12.2017, Helsinki Biobank HUS/359/2017, Auria Biobank AB17-5154 and amendment #1 (August 17 2020), AB20-5926 and amendment #1 (April 23 2020), Biobank Borealis of Northern Finland_2017_1013, Biobank of Eastern Finland 1186/2018 and amendment 22 § /2020, Finnish Clinical Biobank Tampere MH0004 and amendments (21.02.2020 & 06.10.2020), Central Finland Biobank 1-2017, and Terveystalo Biobank STB 2018001. Data Analysis We tested associations between LD and AD using logistic regression analysis utilizing the FinnGen data. The models were adjusted for age, sex and cohort. We calculated Cox proportional hazard model with age as the timescale using sex and cohort as covariates, and tested the model assumptions by cox.zph function. In addition, we tested survival with Kaplan–Meier estimator using a non-parametric log-rank test. We performed analyses in R version 4.1.0 using packages survminer and survival, and visualizing the results with survminer. A P value less than 0.05 was considered statistically significant. For mouse models, GraphPad Prism v9.1.0 was used to develop and analyze graphs, utilizing two-way ANOVA and by Šidák’s multiple comparisons correction test for significance of P < 0.05. Results 24-month-long chronic infection initiated in young mice leads to severe dermatitis of the tail In our ongoing studies using a murine model of LD, we observed that many mice which had been infected with B. burgdorferi , and never treated with antibiotics, developed dermatitis. This dermatitis ranged in severity, with some aged animals developing dermatitis severe enough to warrant compassionate euthanasia. In order to determine the nature and cause of the dermatitis, and how it may relate to age, we infected 8-week-old female C3H/HeJ mice and closely examined them for 24 months, compared to uninfected age-matched control mice (Figure 1 ). Visualization of the mouse tail by light microscopy showed severe dermatitis in the infected mice. External features of the phenotypic tails included hair loss, skin flaking, hyperpigmentation, hemorrhaging, and ulceration. Gross pathology scores of affected skin are significantly higher in aged mice with acute Lyme disease Aging is known to cause immune system dysfunction and increased susceptibility to disease and infection. 26 To further investigate the impact of age on the onset and severity of dermatitis symptoms in the tails of mice with LD, we set up an experiment of acute Lyme disease in female C3H/HeJ mice of various ages at the time of infection: 6 weeks, 1 year, and 2 years (Figure 2 B, 2 D, and 2 F). Tails of infected mice were directly compared with age-matched uninfected controls: 6 weeks, 1 year, 2 years (Figure 2 A, 2 C, 2 E). Two months post-infection, the mice were humanely euthanized and whole tails were evaluated by light microscopy (Figure 2 ). Mice infected at 6 weeks of age (Figure 2 B) show a minimal difference in tail condition compared to age-matched, uninfected mice (Figure 2 A). Mice infected at 1 year of age present with disorganized hair growth, varying degrees of hair loss, skin flaking, dark lesions and hemorrhaging (Figure 2 D). Age-matched, 1-year-old uninfected controls show no pathology (Figure 2 C). Mice infected at 2 years of age developed severe dermatitis with complete hair loss, skin flaking, dark lesions, hemorrhaging and damaged or missing distal tail tip (Figure 2 F). Tails of 2-year-old age-matched, uninfected mice showed disorganized hair growth consistent with natural aging phenotypes of C3H/HeJ mice (Figure 2 E). Surprisingly, the severe pathology of the acutely (2 month) infected 2-year-old mice (Figure 2 F) is grossly indistinguishable from the chronically (24 month) infected mice (Figure 1 B). External pathology was quantified for all cohorts and analyzed using two-way ANOVA followed by Šidák’s multiple comparisons test ( P < 0.005). Mice acutely infected at 6 weeks of age had minimal statistically significant differences in tail pathology to their uninfected controls ( P <0.05, LS mean difference = 1.00, 95% CI [0.08154, 1.918]). Substantially greater statistical difference is seen in 1- and 2-year-old mice compared to their respective age-matched uninfected controls ( P <0.0005, LS mean = 3.25, 95% CI [2.223, 4.277] and P <0.0005, LS mean = 4.10, 95% CI 3.885, 5.315]) (Figure 2 G). Tail pathology external scoring and quantification parameters are detailed in the methods. Score values for tail pathologies in individual mice are shown in Supplementary Table 1. Features of atopic dermatitis found in histopathology of affected skin from mice acutely infected with B. burgdorferi show increased severity with advanced age Human atopic dermatitis is commonly a clinical diagnosis and biopsies are only rarely performed in the evaluation. 14 Similar to human histopathology, murine AD presents with varying levels of acanthosis, spongiosis, and perivascular inflammation. 19 Another commonly observed feature of human atopic dermatitis, which is observed in the B. burgdorferi- infected mice of this study, is post-inflammatory hyperpigmentation of the skin, which is pigmentation that occurs after resolution of inflammatory skin eruptions. 27 Gross pathology identified the development of age-dependent dermatitis on the tails of C3H/HeJ mice acutely infected (2 months) with B. burgdorferi in 3 different age groups (6 week, 1 year, 2 years). Tails from these mice were then processed for histology. Transverse cross sections from the caudal, medial, and distal tail regions from these age-macthed uninfected and infected mice were stained with H&E for evaluation (Supplementary Figure 1). Epidermal regions of the tail were closely evaluated for features of dermatitis (Figure 3 ). Mice infected with B. burgdorferi at 6 weeks of age showed lack of histopathologic findings (Figure 3 B). Mice infected at 1 year of age developed acanthosis, spongiosis and mild thickening of the stratum corneum, as visualized by sections of the tail skin (Figure 3 D). Mice infected at 2 years of age showed the most significant pathology with more severe acanthosis accompanied by elongated rete ridges, spongiosis and hyperkeratosis (Figure 3 F). All mice infected at 1 and 2 years of age also showed loss of hair follicles and post-inflammatory hyperpigmentation consistent with observations from gross examination. The assigned scores for both external and internal pathology were then compared via heat map which revealed strong associations (Supplementary Figure 2). For each mouse, internal scores of acanthosis and spongiosis were summated and graphed against their respective external score (Supplementary Figure 2A). Individual mice with severe external features of AD additionally had congruent histopathologic findings. Likewise, uninfected mice had low scores for both external and internal AD pathology. Mast cells localize to atopic dermatitis lesions consistent with age-dependent severity in mice with acute Lyme disease Mast cells (MC) are key mediators of the T H 2 immune response and are classically involved with allergy and IgE-mediated inflammation. 28 Several studies have implicated MC involvement in AD pathogenesis, including IgE-mediated sensitization to environmental allergens as a typical feature of human AD. 21 Further, B. burgdorferi spirochetes are capable of inducing mast cell degranulation. 29 We therefore investigated if the age-dependent pattern of AD severity seen in C3H/HeJ mice with LD may be correlated with MC localization to these lesions. Tail sections from mice infected with B. burgdorferi at ages of 6 weeks, 1 year, and 2 years along with their aged matched uninfected controls were stained antibodies against CD117, a receptor tyrosine kinase and mast cell marker (Figure 4 A-F). During analysis, mast cells were classified by cellular shape and CD117 stain intensity. All positively identified MC within the dermis of a single tail section were quantified for all cohorts and analyzed using two-way ANOVA followed by Šidák’s multiple comparisons test (P < 0.005). Interestingly, both acutely infected 1- and 2-year old mice groups had substantial MC localization to the AD lesions (Figure 4 G). Mice infected at 1 year of age ( P = 0.005, LS mean = 16, 95% CI 6.715, 25.29]) or 2 years of age ( P = 0.0002, LS mean = 20.72, 95% CI [10.17, 31.28]) had significantly more MCs in the dermal layer of the tail than their age-matched, uninfected controls. In contrast, mice infected at 6 weeks of age had no significant difference in MC count compared to their respective uninfected controls ( P = 0.74, LS mean = 2.667, 95% CI [-6.619, 11.95]). Lyme disease associates with atopic dermatitis in humans Recent large scale cohorts have provided means to explore epidemiological correlates leveraging on electronic health records. Using electronic health records comprising 342,499 individuals in FinnGen we identified 5,248 individuals with LD; 444 individuals from hospital inpatient, 1,317 individuals from hospital outpatient and 3,487 individuals from primary outpatient registries. We identified 17,233 individuals with AD; 3,063 individuals from hospital inpatient, 7,841 individuals from hospital outpatient, 5,796 individuals from primary outpatient and 533 individuals from drug reimbursement registries with 298 individuals with both LD and AD, and the majority of individuals being disease free for LD or AD (n = 320,316) (Figure 5 A). Overall, we identified 298 prevalent cases that had diagnosis for both AD and LD, and 85 incident cases that had AD diagnosis after LD diagnosis. AD was more frequent in individuals with LD (5.7% in individuals with LD vs. 5.0% in individuals without LD) (Figure 5 A). The association between LD and AD was statistically significant (OR = 1.91 [1.68 -2.37], P < 2e-16). We estimated the severity of LD infection by dividing the number of diagnoses into two categories; 3 or more LD diagnoses vs. 1 LD diagnosis. We excluded individuals who had AD diagnosis prior to LD diagnosis (N remaining = 4,373 individuals with LD, 75 participants with LD and AD diagnosis). First, we calculated logistic regression model and discovered that LD with more than 3 diagnoses was significantly associated with increased risk for AD (OR=2.19[1.35-3.55], P =0.0014). In addition, we estimated temporal effect by Cox-proportional hazard model using age as the timescale showing corresponding result (HR=2.26[1.54-3.95], P =0.0017). Finally, we calculated Kaplan Meier estimates demonstrating that survival probability differed significantly between groups 3 or more LD diagnoses vs. 1 LD diagnosis. Consequently, we show that patients in the 1 LD diagnosis group had a higher AD free survival percentage compared to individuals in the 3 or more LD group (P = 4.0e-5) (Figure 5 B). Discussion Classic phenotypes of Lyme disease in humans after acute B. burgdorferi infection include skin manifestations of various clinical phenotypes such as the erythema migrans, but this varies significantly across humans. New onset of chronic dermatologic conditions after LD have not been well investigated. The C3H/HeJ mouse model is frequently used in LD research because it presents with both arthritis and carditis. However, we observed that female C3H/HeJ mice chronically infected with B. burgdorferi often developed severe dermatitis of the tail. Since the mouse tail skin shares more similarity with human skin as compared to areas of skin with dense fur, we focused on this tissue to investigate this dermatitis further. Due to the absence of noticeable dermatitis in younger infected mice, we investigated whether dermatitis in older infected mice was primarily driven by the length of infection or the age of the host animal at the time of infection. We developed a numeric scoring system to assess the external pathology and internal histology of murine skin. Higher scores were associated with more severe pathology. Both internal and external scoring increasingly worsened with age and we found a strong correlation between increased age and AD severity of the tail among B. burgdorferi- infected mice. Interestingly, internal and external scores of both acutely (2 months) infected 2-year-old mice, and mice who had been chronically (24 months) infected since 8 weeks old, both resulted in severe pathologic changes of hair loss, skin flaking, hyperpigmentation, and ulceration. The youngest mice (6 weeks old) did not develop features of AD within the 2-month observation period before euthanasia. While natural aging does impact hair growth and tissue quality in uninfected controls, the infection consistently and significantly amplified the extent of AD lesions on the tails of mice with LD. These lesions were also associated with increased mast cell infiltration to the tail dermis. Given the dermatologic findings we observed in both acutely and chronically infected aged mice, we were curious to see if Lyme disease was also associated with atopic dermatitis in humans through analysis of clinically diagnosed LD and AD patients from FinnGen in 342,499 individuals. We found a significant association between LD and AD. Among people with LD, there was a higher prevalence of AD than among the general population. Approximately 90% of individuals who are diagnosed with acute LD recover without complications, and therefore we further divided the individuals with LD in FinnGen into a subset who had one medical visit due to LD and a subset who had three or more visits. We observed an association with AD and the number of visits due to LD, which may reflect disease severity. Consequently, those individuals who have several healthcare visits due to LD may have a higher risk for AD than individuals with only one visit. Increased age can have damaging effects on immune system regulation and host defenses, while also raising the risk for inflammatory conditions. 28 Age-related defects in critical mechanisms such as production of pro-inflammatory cytokines (TNF-⍺ and IFN-𝛾) and terminal differentiation of keratinocytes can induce differential phenotypes of the epidermis. 29 Mast cells are a major effector cell type implicated in pathogenesis of human AD through the release of proinflammatory mediators and IgE-mediated sensitization of environmental allergens. 21 Utilizing mouse models, mast cells have also been implicated in other age-related pathologic mechanisms, such as damage to lung endothelial tissue due to MC-mediated neutrophil migration. 30 Existing literature exploring the role of MC in LD is limited; however, evaluation of gerbils infected with B. burgdorferi showed significant histopathologic changes, including MC infiltration of the extracellular matrix surrounding major organs. 31 As LD is an illness primarily characterized by inflammation of the joints, infection with B. burgdorferi could contribute to mast cell dysregulation and possibly lead to a higher risk of developing inflammatory diseases such as AD. Aged female C3H/HeJ mice with acute and chronic LD present with AD of the tail that is indistinguishable by gross evaluation and histology; a finding that was not observed in uninfected age-matched controls or in young mice. This phenotype establishes a significant association between age of host with LD and onset of AD. We provide a numeric scale to quantify severity of AD, both internally and externally. This work also supports utilization of the C3H/HeJ mouse model in further study of lyme-disease associated AD. The corroborating human data from FinnGen also bolsters the validity of a novel relationship between age, Lyme disease, and atopic dermatitis. Limitations Importantly, the mouse tails in this study which presented with AD were not evaluated for presence of B. burgdorferi spirochetes, although expected, as B. burgdorferi is frequently found in the tail tissue of infected wild caught mice. 32 Symptoms of hair loss, ulceration, and tail tip disfiguration could be exacerbated by mouse self-mutilation induced from pruritus, or itch. Mice used for this study were not monitored for behavior, so frequency and severity of self-scratching or biting cannot be determined. When external tail pathology was observed, it was present in all mice of a single cage, suggesting that the pathology was not due to aggressive behaviors between individual mice. Our histological analyses of the whole tail sections find two of the three key features of atopic dermatitis: spongiosis and acanthosis. As PVI is not commonly observed in the C3H/HeJ mouse strain, the presence of spongiosis and acanthosis are used to determine atopic dermatitis even in the absence of PVI. The human disease association data from FinnGen may reflect more severe pathology since FinnGen is enriched for hospital level diagnoses. The enrichment for hospital level diagnoses may result in larger effect sizes than what may be observed in more benign pathology or in outpatient only data. Furthermore, the number of LD diagnoses have increased substantially during the last ten years. In the sample population found in FinnGen, the median age of patients diagnosed with AD was 32.9 years, and the median age of the LD population was 63.9 years. The recent shift in frequency of diagnoses of LD and the earlier age of diagnosis in AD may affect our power to examine any temporal associations between LD and AD that we conduct in this patient population. Some of these limitations can be addressed in the future with larger data sets and with longer follow-up. Abbreviations Declarations ETHICS APPROVAL/CONSENT TO PARTICIPATE Animal studies were performed at the Stanford School of Medicine Association for Assessment and Accreditation of Laboratory Animal Care International (AAALAC) accredited Rodent Animal Facility (Palo Alto, CA). All procedures and care guidelines were approved by the Stanford University Administrative Panel on Laboratory Animal Care (Protocol #30109). Patients and control subjects in FinnGen provided informed consent for biobank research, based on the Finnish Biobank Act. Alternatively, separate research cohorts, collected prior the Finnish Biobank Act came into effect (in September 2013) and start of FinnGen (August 2017), were collected based on study-specific consents and later transferred to the Finnish biobanks after approval by Fimea (Finnish Medicines Agency), the National Supervisory Authority for Welfare and Health. Recruitment protocols followed the biobank protocols approved by Fimea. The Coordinating Ethics Committee of the Hospital District of Helsinki and Uusimaa (HUS) statement number for the FinnGen study is Nr HUS/990/2017. CONSENT FOR PUBLICATION - Not Applicable AVAILABILITY OF DATA & MATERIALS All data and associated analyses conducted within this study will be made available by the corresponding author upon reasonable request. CONFLICT OF INTEREST None of the authors have any conflicts of research regarding the research presented in this manuscript. FUNDING Research reported in this publication was supported by the Fairbairn family foundation; the Younger family foundation; the Robert J. Kleberg, Jr., and Helen C. Kleberg Foundation; Bay Area Lyme Foundation; the Virginia and D. K. Ludwig Fund for Cancer Research; M.C.T. and Y.Y.Y. were supported by Stanford Immunology training grant 5T32AI007290, and M.C.T. was also supported by the NIH NRSA 1 F32 AI124558-01 award. S.D.G. was supported by the California Institute for Regenerative Medicine Bridges 2.0 Grant EDUC2-08397. L.B.T.D. was supported by a Stanford Diversifying Academia Recruiting Excellence Fellowship. The FinnGen project is funded by two grants from Business Finland (HUS 4685/31/2016 and UH 4386/31/2016) and the following industry partners: AbbVie Inc., AstraZeneca UK Ltd, Biogen MA Inc., Bristol Myers Squibb (and Celgene Corporation & Celgene International II Sàrl), Genentech Inc., Merck Sharp & Dohme Corp, Pfizer Inc., GlaxoSmithKline Intellectual Property Development Ltd., Sanofi US Services Inc., Maze Therapeutics Inc., Janssen Biotech Inc, Novartis AG, and Boehringer Ingelheim. Following biobanks are acknowledged for delivering biobank samples to FinnGen: Auria Biobank (www.auria.fi/biopankki), THL Biobank (www.thl.fi/biobank), Helsinki Biobank (www.helsinginbiopankki.fi), Biobank Borealis of Northern Finland (https://www.ppshp.fi/Tutkimus-ja-opetus/Biopankki/Pages/Biobank-Borealis-briefly-in-English.aspx), Finnish Clinical Biobank Tampere (www.tays.fi/en-US/Research_and_development/Finnish_Clinical_Biobank_Tampere), Biobank of Eastern Finland (www.ita-suomenbiopankki.fi/en), Central Finland Biobank (www.ksshp.fi/fi-FI/Potilaalle/Biopankki), Finnish Red Cross Blood Service Biobank (www.veripalvelu.fi/verenluovutus/biopankkitoiminta) and Terveystalo Biobank (www.terveystalo.com/fi/Yritystietoa/Terveystalo-Biopankki/Biopankki/). All Finnish Biobanks are members of BBMRI.fi infrastructure (www.bbmri.fi). Finnish Biobank Cooperative -FINBB (https://finbb.fi/) is the coordinator of BBMRI-ERIC operations in Finland. The Finnish biobank data can be accessed through the Fingenious ® services (https://site.fingenious.fi/en/) managed by FINBB. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript. AUTHORS’ CONTRIBUTIONS B.T.L. and M.S. carried out initial infections and observations. S.G. and G.B. contributed to subsequent infections and observations. B.T.L., L.B.T.D., P.M., P.H., and Y.Y.Y.conducted endpoint tissue procurement. S.G. prepared samples for histopathology and contributed to histopathology analysis. A.S. and E.G. conducted primary analysis of histopathology and murine diagnosis. The FinnGen Project was utilized for human epidemiological data that was studied and analyzed by S.S. and H.O. S.G. wrote the manuscript with B.T.L. Subsequent manuscript contributions and edits were made by M.C.T., E.S., S.S., H.O., S.G., BT.L., P.H., G.B. and AS. B.T.L., S.S., and H.O. created figures with contributions by M.C.T., S.G., G.B., E.S., and P.H. M.C.T. and I.L.W. supervised all experiments and writing of the manuscript. All authors read and approved the final manuscript. ACKNOWLEDGEMENTS The authors wish to thank members of the Weissman Lab at the Institute for Stem Cell Biology & Regenerative Medicine at Stanford University School of Medicine and Histowiz for their processing of our histological samples. We want to acknowledge the participants and investigators of the FinnGen study. References Steere AC, Strle F, Wormser GP, Hu LT, Branda JA, Hovius JW, Li X, Mead PS. Lyme borreliosis. Nat Rev Dis Primers. 2016 Dec 15;2:16090. doi: 10.1038/nrdp.2016.90 . Erratum in: Nat Rev Dis Primers. 2017 Aug 03;3:17062. PMID: 27976670; PMCID: PMC5539539. Centers for Disease Control and Prevention. (2021, April 29). Data and surveillance . Centers for Disease Control and Prevention. 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Tmem79/Matt is the matted mouse gene and is a predisposing gene for atopic dermatitis in human subjects. J Allergy Clin Immunol. 2013 Nov;132(5):1121-9. doi: 10.1016/j.jaci.2013.08.046. Epub 2013 Sep 29. Erratum in: J Allergy Clin Immunol. 2015 Dec;136(6):1710. PMID: 24084074; PMCID: PMC3834151. Morais KL, Miyamoto D, Maruta CW, Aoki V. Diagnostic approach of eosinophilic spongiosis. An Bras Dermatol. 2019;94:724–8. Singh B, Shinagawa K, Taube C, Gelfand EW, Pabst R. Strain-specific differences in perivascular inflammation in lungs in two murine models of allergic airway inflammation. Clin Exp Immunol. 2005;141(2):223–9. doi: 10.1111/j.1365-2249.2005.02841.x . Alsaad KO, Ghazarian D. My approach to superficial inflammatory dermatoses. J Clin Pathol. 2005;58(12):1233–41. doi: 10.1136/jcp.2005.027151 . Paivandy A, Pejler G. Novel Strategies to Target Mast Cells in Disease. J Innate Immun. 2021;13(3):131–47. doi: 10.1159/000513582 . Epub 2021 Feb 12. PMID: 33582673; PMCID: PMC8138242. Oteo JA, Backenson PB, del Mar Vitutia M, García Moncó JC, Rodríguez I, Escudero R, Anda P. Use of the C3H/He Lyme disease mouse model for the recovery of a Spanish isolate of Borrelia garinii from erythema migrans lesions. Res Microbiol. 1998 Jan;149(1):39-46. doi: 10.1016/s0923-2508(97)83622-4 . PMID: 9766208. Casselli T, Divan A, Vomhof-DeKrey EE, Tourand Y, Pecoraro HL, Brissette CA. A murine model of Lyme disease demonstrates that Borrelia burgdorferi colonizes the dura mater and induces inflammation in the central nervous system. PLoS Pathog. 2021 Feb 1;17(2):e1009256. doi: 10.1371/journal.ppat.1009256 . PMID: 33524035; PMCID: PMC7877756. Moriarty TJ, Norman MU, Colarusso P, Bankhead T, Kubes P, Chaconas G. Real-time high resolution 3D imaging of the lyme disease spirochete adhering to and escaping from the vasculature of a living host. PLoS Pathog. 2008;4(6):e1000090. https://doi.org/10.1371/journal.ppat.1000090 . Mecklenburg L, Kusewitt D, Kolly C, Treumann S, Adams ET, Diegel K, Yamate J, Kaufmann W, Müller S, Danilenko D, Bradley A. Proliferative and non-proliferative lesions of the rat and mouse integument. J Toxicol Pathol. 2013;26(3 Suppl):27S–57S. doi: 10.1293/tox.26.27 S. PMID: 25035577; PMCID: PMC4091526. Weyand CM, Goronzy JJ. Aging of the Immune System. Mechanisms and Therapeutic Targets. Ann Am Thorac Soc. 2016 Dec;13 Suppl 5(Suppl 5):422–8. doi: 10.1513/AnnalsATS.201602-095AW . PMID: 28005419; PMCID: PMC5291468. Cayce KA, McMichael AJ, Feldman SR. Hyperpigmentation: An Overview Of the Common Afflictions. Dermatol Nurs. 2004;16(5):401–6. El Ansari YS, Kanagaratham C, Oettgen HC. Mast Cells as Regulators of Adaptive Immune Responses in Food Allergy. Yale J Biol Med. 2020 Dec;29(5):711–8. 93(. PMID: 33380933; PMCID: PMC7757069. Talkington J, Nickell SP. Borrelia burgdorferi spirochetes induce mast cell activation and cytokine release. Infect Immun. 1999 Mar;67(3):1107–15. doi: 10.1128/IAI.67.3.1107-1115.1999 . PMID: 10024550; PMCID: PMC96436. Barkaway A, Rolas L, Joulia R, Bodkin J, Lenn T, Owen-Woods C, Reglero-Real N, Stein M, Vázquez-Martínez L, Girbl T, Poston RN, Golding M, Saleeb RS, Thiriot A, von Andrian UH, Duchene J, Voisin MB, Bishop CL, Voehringer D, Roers A, Rot A, Lämmermann T, Nourshargh S. Age-related changes in the local milieu of inflamed tissues cause aberrant neutrophil trafficking and subsequent remote organ damage. Immunity. 2021 Jul 13;54(7):1494-1510.e7. doi: 10.1016/j.immuni.2021.04.025. Epub 2021 May 24. PMID: 34033752; PMCID: PMC8284598. Preac Mursic V, Patsouris E, Wilske B, Reinhardt S, Gross B, Mehraein P. Persistence of Borrelia burgdorferi and histopathological alterations in experimentally infected animals. A comparison with histopathological findings in human Lyme disease. Infection. 1990 Nov-Dec;18(6):332-41. doi: 10.1007/BF01646399 . PMID: 2076905. Zawada SG, von Fricken ME, Weppelmann TA, Sikaroodi M, Gillevet PM. Optimization of tissue sampling for Borrelia burgdorferi in white-footed mice (Peromyscus leucopus). PLoS One. 2020 Jan 24;15(1):e0226798. doi: 10.1371/journal.pone.0226798 . PMID: 31978068; PMCID: PMC6980393. Supplementary Files SupplementaryTable1.png Supplementary Table 1: Pathologic scoring quantification of tails in mice with acute Lyme disease. (A) External pathology. Each condition observed on the mouse tail and used in external scoring is reported as present or absent per individual mouse. Top row indicates age of mice at time of infection with B. burgdorferi or injection with vehicle control. (B) Internal Histopathology. Each condition observed in the mouse tail and used for internal scoring is reported as present or absent per individual mouse. Top row indicates age of mice at time of infection with B. burgdorferi or injection with vehicle control. SupplementaryFigure1.png Supplementary Figure 1: Histopathology of tail cross sections by age. Representative images of entire tail cross sections from mice infected with B. burgdorferi at ages of 6 weeks (B), 1 year (D) or 2 years (F) that sustained an acute infection for 2 months. Respective age-matched, uninfected mice given vehicle controls are shown for comparison (A, C, E). Scale bars are equivalent to 1mm. SupplementaryFigure2.png Supplementary Figure 2. Correlation of internal and external scores of atopic dermatitis. Heat map showing number of mice with various degrees of AD pathology of the tail by summation of internal pathology scores plotted against external pathology scores. Dataset includes 6 week, 1 year, and 2 year old mice that sustained an acute infection of B. burgdorferi for 2 months, along with their age-matched uninfected controls. 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Also discoverable on Platform About Our Team In Review Editorial Policies Advisory Board Help Center Resources Author Services Accessibility API Access RSS feed Manage Cookie Preferences © Research Square 2026 | ISSN 2693-5015 (online) Privacy Policy Terms of Service Do Not Sell My Personal Information {\"props\":{\"pageProps\":{\"initialData\":{\"identity\":\"rs-1316212\",\"acceptedTermsAndConditions\":true,\"allowDirectSubmit\":true,\"archivedVersions\":[],\"articleType\":\"Research\",\"associatedPublications\":[],\"authors\":[{\"id\":82137217,\"identity\":\"f8feaf14-5eca-4228-a9f0-102f809c3cee\",\"order_by\":0,\"name\":\"Brandon T Lee\",\"email\":\"\",\"orcid\":\"\",\"institution\":\"Massachusetts Institute of Technology\",\"correspondingAuthor\":false,\"submittingAuthor\":false,\"prefix\":\"\",\"firstName\":\"Brandon\",\"middleName\":\"T\",\"lastName\":\"Lee\",\"suffix\":\"\"},{\"id\":82137218,\"identity\":\"01055af5-4513-4bd4-bacd-d34de4b9c153\",\"order_by\":1,\"name\":\"Sarah 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Upon euthanasia, tails were analyzed by light microscopy and evaluated for external pathology. Scale bars are equivalent to 1mm.\\u003c/p\\u003e\",\"description\":\"\",\"filename\":\"Figure1.jpg\",\"url\":\"https://assets-eu.researchsquare.com/files/rs-1316212/v1/141548c87f6d064e0c44594e.jpg\"},{\"id\":18071581,\"identity\":\"5b7711fa-2c2a-4315-8638-d23b3364e792\",\"added_by\":\"auto\",\"created_at\":\"2022-02-09 16:57:09\",\"extension\":\"jpg\",\"order_by\":2,\"title\":\"Figure 2\",\"display\":\"\",\"copyAsset\":false,\"role\":\"figure\",\"size\":387018,\"visible\":true,\"origin\":\"\",\"legend\":\"\\u003cp\\u003e\\u003cstrong\\u003eGross tail pathology in mice with acute Lyme disease significantly increases with age. \\u003c/strong\\u003eUninfected female C3H/HeJ control mice aged 6 weeks (n = 5) (A), 1 year (n = 4) (C), or 2 years (n = 2) (E) were compared to mice infected with \\u003cem\\u003eB. burgdorferi \\u003c/em\\u003eat equivalent ages of 6 weeks (n = 5) (B), 1 year (n = 4) (D), or 2 years (n = 5) (F). Images of tails were taken 2 months post-infection and severity of dermal pathology was evaluated and scored. Assigned scores were then analyzed using two-way ANOVA followed by Šidák’s multiple comparisons test (*\\u003cem\\u003eP \\u003c/em\\u003e\\u0026lt; 0.05, ****\\u003cem\\u003eP\\u003c/em\\u003e \\u0026lt; 0.0005) (G). Scale bars are equivalent to 1mm.\\u0026nbsp;\\u003c/p\\u003e\",\"description\":\"\",\"filename\":\"Figure2.jpg\",\"url\":\"https://assets-eu.researchsquare.com/files/rs-1316212/v1/02c32b43e3b941e759ba64f2.jpg\"},{\"id\":18071582,\"identity\":\"094f3f23-dae2-4705-a9ca-f7c631e5ea9d\",\"added_by\":\"auto\",\"created_at\":\"2022-02-09 16:57:09\",\"extension\":\"jpg\",\"order_by\":3,\"title\":\"Figure 3\",\"display\":\"\",\"copyAsset\":false,\"role\":\"figure\",\"size\":897007,\"visible\":true,\"origin\":\"\",\"legend\":\"\\u003cp\\u003e\\u003cstrong\\u003eTail histopathology of mice with acute \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e infection reveal features of atopic dermatitis that worsen with age. \\u003c/strong\\u003e\\u003c/p\\u003e\\u003cp\\u003e Representative images of transverse cross sections of the mouse tail stained with H\\u0026amp;E. Uninfected female C3H/HeJ control mice aged 6 weeks (n = 5) (A), 1 year (n = 4) (C), or 2 years (n = 2) (E) were compared to mice infected with \\u003cem\\u003eB. burgdorferi \\u003c/em\\u003eat equivalent ages of 6 weeks (n = 5) (B), 1 year (n = 4) (D), or 2 years (n = 5) (F) Mice were humanely euthanized at 2 months post-infection and all tails were collected for histology. Presence of spongiosis is exemplified by an “S”, and acanthosis of the epidermis is indicated by a black line labeled “N”. All images are at 10X magnification, and scale bars are equivalent to 200μm.\\u003c/p\\u003e\",\"description\":\"\",\"filename\":\"Figure3.jpg\",\"url\":\"https://assets-eu.researchsquare.com/files/rs-1316212/v1/6dc459e209092d191a62dfdf.jpg\"},{\"id\":18071585,\"identity\":\"3ece5b16-0528-4e2c-9c79-d30091cc870c\",\"added_by\":\"auto\",\"created_at\":\"2022-02-09 16:57:09\",\"extension\":\"jpg\",\"order_by\":4,\"title\":\"Figure 4\",\"display\":\"\",\"copyAsset\":false,\"role\":\"figure\",\"size\":613887,\"visible\":true,\"origin\":\"\",\"legend\":\"\\u003cp\\u003e\\u003cstrong\\u003eMast cells localize to atopic dermatitis lesions consistent with age-dependent severity in mice with acute Lyme disease.\\u003c/strong\\u003e\\u003c/p\\u003e\\u003cp\\u003e\\u003cstrong\\u003e \\u003c/strong\\u003eRepresentative images of transverse cross sections of the mouse tail stained for CD117 (brown) with a hematoxylin counterstain (purple). Uninfected female C3H/HeJ control mice aged 6 weeks (n = 3) (A), 1 year (n = 3) (C), or 2 years (n = 2) (E) were compared to mice infected with \\u003cem\\u003eB. burgdorferi \\u003c/em\\u003eat equivalent ages of 6 weeks (n = 3) (B), 1 year (n = 3) (D), or 2 years (n = 3) (F). Mice were humanely euthanized at 2 months post-infection and a select number of tails were collected for histology to determine mast cell prevalence by CD117 staining. Black arrows indicate a representative mast cell in each image. The total mast cell count is shown by age and condition using two-way ANOVA followed by Šidák’s multiple comparisons test (ns p \\u0026gt; 0.05, **\\u003cem\\u003eP \\u003c/em\\u003e\\u0026lt; 0.005) (G). Scale bars are equivalent to 100μm.\\u003c/p\\u003e\",\"description\":\"\",\"filename\":\"Figure4.jpg\",\"url\":\"https://assets-eu.researchsquare.com/files/rs-1316212/v1/c89f428933e311f9f9d9b259.jpg\"},{\"id\":18071728,\"identity\":\"b7256256-2bbc-4e86-bb36-93870de026c7\",\"added_by\":\"auto\",\"created_at\":\"2022-02-09 17:03:09\",\"extension\":\"jpg\",\"order_by\":5,\"title\":\"Figure 5\",\"display\":\"\",\"copyAsset\":false,\"role\":\"figure\",\"size\":293158,\"visible\":true,\"origin\":\"\",\"legend\":\"\\u003cp\\u003e\\u003cstrong\\u003eAssociation of Lyme disease (LD) with atopic dermatitis (AD) in FinnGen\\u003c/strong\\u003e.\\u003c/p\\u003e\\u003cp\\u003e(A) Prevalence of LD and AD in FinnGen. (B) Kaplan-Meier survival analysis in incident AD in individuals with 1 diagnosis for LD (blue), or at least 3 LD diagnoses (red). All individuals (N = 75) have at least one LD diagnosis prior to onset of AD (log rank \\u003cem\\u003eP\\u003c/em\\u003e = 4.0e\\u003csup\\u003e-5\\u003c/sup\\u003e).\\u003c/p\\u003e\\u003cp\\u003e\\u003cbr\\u003e\\u003c/p\\u003e\",\"description\":\"\",\"filename\":\"Figure5.jpg\",\"url\":\"https://assets-eu.researchsquare.com/files/rs-1316212/v1/ebe4bfdf7d8b4319ffa0ef3b.jpg\"},{\"id\":24368169,\"identity\":\"f9f8541b-ad47-4fa1-b5c6-e2d7d273dfc1\",\"added_by\":\"auto\",\"created_at\":\"2022-07-26 19:17:07\",\"extension\":\"pdf\",\"order_by\":0,\"title\":\"\",\"display\":\"\",\"copyAsset\":false,\"role\":\"manuscript-pdf\",\"size\":1459896,\"visible\":true,\"origin\":\"\",\"legend\":\"\",\"description\":\"\",\"filename\":\"manuscript.pdf\",\"url\":\"https://assets-eu.researchsquare.com/files/rs-1316212/v1/6ff18fa2-5cea-4777-8e54-5b8dab594816.pdf\"},{\"id\":18071715,\"identity\":\"13f3e4a8-0587-4074-884d-0425f6c11b10\",\"added_by\":\"auto\",\"created_at\":\"2022-02-09 17:00:09\",\"extension\":\"png\",\"order_by\":1,\"title\":\"\",\"display\":\"\",\"copyAsset\":false,\"role\":\"supplement\",\"size\":127724,\"visible\":true,\"origin\":\"\",\"legend\":\"\\u003cp\\u003e\\u003cstrong\\u003eSupplementary\\u003c/strong\\u003e \\u003cstrong\\u003eTable 1: Pathologic scoring quantification of tails in mice with acute Lyme disease. \\u003c/strong\\u003e\\u003c/p\\u003e\\u003cp\\u003e\\u003cstrong\\u003e \\u003c/strong\\u003e(A)\\u003cstrong\\u003e \\u003c/strong\\u003eExternal pathology. Each condition observed on the mouse tail and used in external scoring is reported as present or absent per individual mouse. Top row indicates age of mice at time of infection with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e or injection with vehicle control. (B) Internal Histopathology.\\u003cstrong\\u003e \\u003c/strong\\u003eEach condition observed in the mouse tail and used for internal scoring is reported as present or absent per individual mouse. Top row indicates age of mice at time of infection with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e or injection with vehicle control.\\u003c/p\\u003e\",\"description\":\"\",\"filename\":\"SupplementaryTable1.png\",\"url\":\"https://assets-eu.researchsquare.com/files/rs-1316212/v1/93f3c49cc7ddcebf8ae02466.png\"},{\"id\":18071588,\"identity\":\"1860d270-1f45-427b-9fdc-593274d1090a\",\"added_by\":\"auto\",\"created_at\":\"2022-02-09 16:57:09\",\"extension\":\"png\",\"order_by\":2,\"title\":\"\",\"display\":\"\",\"copyAsset\":false,\"role\":\"supplement\",\"size\":3535958,\"visible\":true,\"origin\":\"\",\"legend\":\"\\u003cp\\u003e\\u003cstrong\\u003eSupplementary Figure 1: Histopathology of tail cross sections by age.\\u0026nbsp;\\u003c/strong\\u003e\\u003c/p\\u003e\\u003cp\\u003e Representative images of entire tail cross sections from mice infected with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e\\u003cstrong\\u003e\\u003cem\\u003e \\u003c/em\\u003e\\u003c/strong\\u003eat ages of 6 weeks (B), 1 year (D) or 2 years (F) that sustained an acute infection for 2 months. Respective age-matched, uninfected mice given vehicle controls are shown for comparison (A, C, E). Scale bars are equivalent to 1mm.\\u003c/p\\u003e\",\"description\":\"\",\"filename\":\"SupplementaryFigure1.png\",\"url\":\"https://assets-eu.researchsquare.com/files/rs-1316212/v1/56883b96a84c277cc936eed1.png\"},{\"id\":18071587,\"identity\":\"bea71431-dd64-420e-a226-514a90a7d47c\",\"added_by\":\"auto\",\"created_at\":\"2022-02-09 16:57:09\",\"extension\":\"png\",\"order_by\":3,\"title\":\"\",\"display\":\"\",\"copyAsset\":false,\"role\":\"supplement\",\"size\":218020,\"visible\":true,\"origin\":\"\",\"legend\":\"\\u003cp\\u003e\\u003cstrong\\u003eSupplementary Figure 2. Correlation of internal and external scores of atopic dermatitis\\u003c/strong\\u003e. Heat map showing number of mice with various degrees of AD pathology of the tail by summation of internal pathology scores plotted against external pathology scores. Dataset includes 6 week, 1 year, and 2 year old mice that sustained an acute infection of \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e for 2 months, along with their age-matched uninfected controls.\\u003c/p\\u003e\",\"description\":\"\",\"filename\":\"SupplementaryFigure2.png\",\"url\":\"https://assets-eu.researchsquare.com/files/rs-1316212/v1/828b87418fc3a7125d4eca8a.png\"}],\"financialInterests\":\"\",\"formattedTitle\":\"\\u003cp\\u003eNovel Association of Lyme Disease, Age, and Atopic Dermatitis\\u003c/p\\u003e\",\"fulltext\":[{\"header\":\"Introduction\",\"content\":\"\\u003cp\\u003eLyme disease (LD) is the most prevalent tick-borne illness caused by infection with the spirochete \\u003cem\\u003eBorrelia burgdorferi\\u003c/em\\u003e. LD is highly prevalent in the Northern hemisphere and especially endemic in woody regions with increased tick exposure.\\u003csup\\u003e1\\u003c/sup\\u003e Pathogenesis of LD is classified into three stages: early localized, early disseminated, and late disseminated.\\u003csup\\u003e2\\u003c/sup\\u003e A classic identifier which can be used to diagnose early localized LD is an erythema migrans which can develop in the first several weeks of infection. Patients may present with several different rash manifestations, including the hallmark \\\"bulls-eye\\\", or no rash at all.\\u003csup\\u003e3,4\\u003c/sup\\u003e Progression to the early disseminated stage is characterized by various pathologies of the integumentary, musculoskeletal and nervous systems.\\u003csup\\u003e1,5\\u003c/sup\\u003e If left untreated, late disseminated LD may present with cutaneous manifestations such as acrodermatitis chronica atrophicans, which may show variable atrophy and discoloration of skin.\\u003csup\\u003e6\\u003c/sup\\u003e\\u003c/p\\u003e \\u003cp\\u003eC3H/HeJ mice are commonly used as a model for LD because they develop several clinical features similar to human LD upon infection with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e, including carditis and arthritis.\\u003csup\\u003e7\\u003c/sup\\u003e Compared to similar strains, C3H/HeJ mice exhibit chronic disease persistence with a higher degree of bacterial dissemination.\\u003csup\\u003e8\\u003c/sup\\u003e This mouse strain developed a spontaneous mutation in the lipopolysaccharide (LPS) domain of the Toll-Like Receptor 4 (TLR4) gene. Mice of the C3H substrain typically exhibit higher disease persistence compared to other strains, whether TLR4 is functional (C3H/HeN), or non-functional (C3H/HeJ), indicating that TLR4 recognition may not be involved in clearance of \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e.\\u003csup\\u003e9\\u003c/sup\\u003e TLR4, which mediates pathogen sensing via recognition of LPS/endotoxin, is found in skin cells with aberrant expression in dermatitis.\\u003csup\\u003e10\\u003c/sup\\u003e In mice challenged with the hapten, 2,4-dinitrochlorobenzene (DNCB), TLR4 knockout (KO) mice developed more severe atopic dermatitis than wild-type (WT) mice and produced high levels of inflammatory cytokines associated with Type 2 Helper T-cell (T\\u003csub\\u003eH\\u003c/sub\\u003e2) responses.\\u003csup\\u003e11\\u003c/sup\\u003e Interestingly, over the course of our studies on untreated long-term infection models of Lyme disease we noticed dermatitis with flaky lesions on the tail skin of C3H/HeJ mice after a year of infection with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e. However, the tail is not typically an organ of research interest and the cause of this dermatitis was unknown. Mouse studies in melanocyte pigmentation and psoriasis noted the similarity of epidermal layers between mouse tail skin and human skin, indicating the promising utility of the mouse tail as a model for pathology of the human epidermis.\\u003csup\\u003e12,13\\u003c/sup\\u003e\\u003c/p\\u003e \\u003cp\\u003eAtopic dermatitis (AD) is a chronic, inflammatory skin disease with usual onset occurring during childhood.\\u003csup\\u003e14\\u003c/sup\\u003e This condition is characterized by pruritic, flaky lesions of the skin, hyperactive T\\u003csub\\u003eH\\u003c/sub\\u003e2-mediated immune responses, and relapsing episodes of skin inflammation.\\u003csup\\u003e15\\u003c/sup\\u003e Symptoms vary widely across individual patients with severity dependent on several genetic and environmental factors.\\u003csup\\u003e16,17\\u003c/sup\\u003e Skin biopsies from patients with AD typically show varying degrees of spongiosis, acanthosis, and a superficial perivascular inflammatory infiltrate.\\u003csup\\u003e18\\u003c/sup\\u003e Spongiosis is characterized by intraepidermal and intercellular edema which may visualized as increased space between epidermal keratinocytes on Hematoxylin and Eosin (H\\u0026amp;E) stained histologic sections.\\u003csup\\u003e18\\u003c/sup\\u003e Acanthosis is described as epidermal thickening.\\u003csup\\u003e19\\u003c/sup\\u003e The perivascular inflammatory infiltrate (PVI) in atopic dermatitis is typically found in the superficial dermis and comprised of lymphocytes and histiocytes. \\u003csup\\u003e20\\u003c/sup\\u003e Mast cells (MC) also may infiltrate the dermal layers of patients with AD, similar to individuals with inflammatory allergic responses.\\u003csup\\u003e16,21\\u003c/sup\\u003e However, a study comparing the inflammatory response to airway irritation in different mouse strains found that C3H/HeJ mice do not exhibit PVI in the airway, despite expected levels of spongiosis and acanthosis.\\u003csup\\u003e19\\u003c/sup\\u003e Furthermore, studies indicate C3H/HeJ mice present with PVI in the dura mater and ears, but less is known in the tail.\\u003csup\\u003e22,23\\u003c/sup\\u003e\\u003c/p\\u003e \\u003cp\\u003eThrough histological analysis of phenotypic tails from \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e-infected mice, we define a scoring method to classify severity of presumed AD based on levels of spongiosis, acanthosis, and mast cell recruitment to the skin co-occurring with gross pathologic features of the tail exterior. These scores show a significant pattern in severity of Lyme disease-associated atopic dermatitis associated with age. Furthermore, human epidemiological data from FinnGen, a large nationwide network of Finnish biobanks, support the findings we observe in the mouse model, showing a significant association between diagnoses of LD and AD.\\u003c/p\\u003e\"},{\"header\":\"Methods\",\"content\":\"\\u003cdiv id=\\\"Sec3\\\" class=\\\"Section2\\\"\\u003e \\u003ch2\\u003eMice\\u003c/h2\\u003e \\u003cp\\u003eFemale C3H/HeJ mice were provided by Jackson Laboratories (Bar Harbor, ME) at ages of 6 weeks, 8 weeks, 1 year, or 2 years (n = 35). Experimental mice were infected with 10\\u003csup\\u003e5\\u003c/sup\\u003e x \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e spirochetes at 100 microliters (\\u0026#120583;L) from a 7-day culture via intraperitoneal needle injection. All infected mice (n = 14) were age-matched to female, uninfected C3H/HeJ control mice (n = 18) that received a vehicle control of 100\\u0026#120583;L of sterile Phosphate Buffered Saline (PBS) via intraperitoneal needle injection. Four mice expired prior to the completion of the experiment referenced in Figure \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003e, including uninfected 2 year (n = 2), uninfected 1 year (n = 1), and infected 1 year (n = 1). Humane euthanasia occurred either 2 months or 24 months post-injection for all experimental and control mice (n = 31) by 5% isoflurane vaporizer with active scavenging. Animal studies were performed at the Stanford School of Medicine Association for Assessment and Accreditation of Laboratory Animal Care International (AAALAC) accredited Rodent Animal Facility (Palo Alto, CA). All procedures and care guidelines were approved by the Stanford University Administrative Panel on Laboratory Animal Care (Protocol #30109).\\u003c/p\\u003e \\u003cp\\u003e \\u003c/p\\u003e \\u003cdiv id=\\\"Sec4\\\" class=\\\"Section3\\\"\\u003e \\u003ch2\\u003eBorrelia burgdorferi\\u003c/h2\\u003e \\u003cp\\u003eB31A3-GFP (Green Fluorescent Protein) \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e were gifted by Dr. Jayakumar Rajadas of Stanford in 10\\u003csup\\u003e7\\u003c/sup\\u003e cells/mL aliquots and stored at -80\\u0026ordm; Celsius (C).\\u003csup\\u003e24\\u003c/sup\\u003e The spirochetes were thawed and cultured in 50 milliliter (mL) conical tubes (Corning) containing 50 mL Barbour-Stonner-Kelly with 4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid (HEPES) buffer media (BSK-H) complete with 6% rabbit serum (Millipore Sigma). Cultures were incubated at 37\\u0026ordm;C in 5% carbon dioxide for 7 days. On the same day as \\u003cem\\u003ein vivo\\u003c/em\\u003e infection, bacterial concentration was determined by Becton Dickinson (BD) LSRFortessa Flow Cytometer and cultures were adjusted to desired working concentration using PBS.\\u003c/p\\u003e \\u003c/div\\u003e \\u003c/div\\u003e \\u003cdiv id=\\\"Sec5\\\" class=\\\"Section2\\\"\\u003e \\u003ch2\\u003eHistology\\u003c/h2\\u003e \\u003cp\\u003eWhole mouse tails were collected at sacrifice and fixed with 4% paraformaldehyde (PFA) for 24 hours before they were transferred to 70% ethanol. All subsequent tissue processing was outsourced to Histowiz (Brooklyn, NY). Tails were cut to show transverse cross sections of the most cranial, caudal, or medial region. Tissue was then stained with either H\\u0026amp;E or Cluster of Differentiation 117 (CD117) antibody, a mast cell marker. All investigators and consulting pathologists were blinded for initial analyses to facilitate unbiased qualitative observations. Pathologists performed subsequent unblinded analysis of tail phenotypes utilizing recommendations set by the International Harmonization of Nomenclature and Diagnostic Criteria for Lesions in Rats and Mice (inHAND) Criteria.\\u003csup\\u003e25\\u003c/sup\\u003e\\u003c/p\\u003e \\u003c/div\\u003e \\u003cdiv id=\\\"Sec6\\\" class=\\\"Section2\\\"\\u003e \\u003ch2\\u003ePathology Scoring \\u0026amp; Quantification\\u003c/h2\\u003e \\u003cp\\u003eGross examination of the tails and microscopic analysis (Leica M205 FA) was performed to classify atopic dermatitis severity through a defined external scoring system from 0 to 5 based on increasing severity, with 5 being the most severe. Each progressively higher score includes pathologies of the previous tier. The parameters of this scale were gathered from previous studies of mouse phenotypes and initial analyses were performed blinded. See 6 external categories below (Table \\u003cspan refid=\\\"Tab1\\\" class=\\\"InternalRef\\\"\\u003e1\\u003c/span\\u003e):\\u003c/p\\u003e \\u003cp\\u003e \\u003cdiv class=\\\"gridtable\\\"\\u003e\\u003ctable float=\\\"Yes\\\" id=\\\"Tab1\\\" border=\\\"1\\\"\\u003e \\u003ccaption language=\\\"En\\\"\\u003e \\u003cdiv class=\\\"CaptionNumber\\\"\\u003eTable 1\\u003c/div\\u003e \\u003cdiv class=\\\"CaptionContent\\\"\\u003e \\u003cp\\u003eExternal Pathology Scoring\\u003c/p\\u003e \\u003c/div\\u003e \\u003c/caption\\u003e \\u003ccolgroup cols=\\\"2\\\"\\u003e \\u003cthead\\u003e \\u003ctr\\u003e \\u003cth align=\\\"left\\\" colspan=\\\"2\\\" nameend=\\\"c2\\\" namest=\\\"c1\\\"\\u003e \\u003cp\\u003eTail External Pathology Scoring \\u0026amp; Quantification\\u003c/p\\u003e \\u003c/th\\u003e \\u003c/tr\\u003e \\u003c/thead\\u003e \\u003ctbody\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e\\u003cb\\u003eScore\\u003c/b\\u003e\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003e\\u003cb\\u003eDescription\\u003c/b\\u003e\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e0\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003eNormal\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e1\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003eAreas of disorganized hair growth\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e2\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003eHair loss and dark lesions\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e3\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003eFlaking with complete hair loss and dark lesions\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e4\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003eUlceration, hemorrhaging with flaking, hair loss, and dark lesions\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e5\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003eDamaged distal tip of tail with ulceration, hemorrhaging, flaking, hair loss, and dark lesions\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003c/tbody\\u003e \\u003c/colgroup\\u003e \\u003c/table\\u003e\\u003c/div\\u003e \\u003c/p\\u003e \\u003cp\\u003eHistology of the tails, as previously described, was used to classify severity of clinical features of atopic dermatitis through an internal scoring system. Spongiosis was scored in a binary fashion and acanthosis of the epidermis was classified below (Table \\u003cspan refid=\\\"Tab2\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003e):\\u003c/p\\u003e \\u003cp\\u003e \\u003cdiv class=\\\"gridtable\\\"\\u003e\\u003ctable float=\\\"Yes\\\" id=\\\"Tab2\\\" border=\\\"1\\\"\\u003e \\u003ccaption language=\\\"En\\\"\\u003e \\u003cdiv class=\\\"CaptionNumber\\\"\\u003eTable 2\\u003c/div\\u003e \\u003cdiv class=\\\"CaptionContent\\\"\\u003e \\u003cp\\u003eInternal Pathology Scoring\\u003c/p\\u003e \\u003c/div\\u003e \\u003c/caption\\u003e \\u003ccolgroup cols=\\\"2\\\"\\u003e \\u003cthead\\u003e \\u003ctr\\u003e \\u003cth align=\\\"left\\\" colspan=\\\"2\\\" nameend=\\\"c2\\\" namest=\\\"c1\\\"\\u003e \\u003cp\\u003eTail Internal Histology Scoring \\u0026amp; Quantification\\u003c/p\\u003e \\u003c/th\\u003e \\u003c/tr\\u003e \\u003c/thead\\u003e \\u003ctbody\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colspan=\\\"2\\\" nameend=\\\"c2\\\" namest=\\\"c1\\\"\\u003e \\u003cp\\u003e\\u003cb\\u003eSpongiosis\\u003c/b\\u003e\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e0\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003eAbsent\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e1\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003ePresent\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colspan=\\\"2\\\" nameend=\\\"c2\\\" namest=\\\"c1\\\"\\u003e \\u003cp\\u003e\\u003cb\\u003eAcanthosis of the epidermis\\u003c/b\\u003e\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e0\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003eNormal\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e1\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003e5 to 10 keratinocytes\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e2\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003e11-14 keratinocytes\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003ctr\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c1\\\"\\u003e \\u003cp\\u003e3\\u003c/p\\u003e \\u003c/td\\u003e \\u003ctd align=\\\"left\\\" colname=\\\"c2\\\"\\u003e \\u003cp\\u003e15 or more keratinocytes\\u003c/p\\u003e \\u003c/td\\u003e \\u003c/tr\\u003e \\u003c/tbody\\u003e \\u003c/colgroup\\u003e \\u003c/table\\u003e\\u003c/div\\u003e \\u003c/p\\u003e \\u003cp\\u003eHistologic scoring utilized the cranial cross section of each tail to maintain consistency across samples. Initial analyses were performed blinded with pathologist consultation, and identified variable degrees of spongiosis and acanthosis. For each mouse, internal scores were summated and graphed against their respective external scores.\\u003c/p\\u003e \\u003c/div\\u003e \\u003cdiv id=\\\"Sec7\\\" class=\\\"Section2\\\"\\u003e \\u003ch2\\u003eFinnGen\\u003c/h2\\u003e \\u003cp\\u003eFinnGen is a large-scale study aiming to genotype 500,000 Finnish participants recruited from hospital samples as well as prospective and retrospective epidemiological and disease-based cohorts. This data is combined with longitudinal registries that record phenotypes and health events over the entire lifespan including the National Hospital Discharge Registry (inpatient and outpatient), Causes of Death Registry, the National Infectious Diseases Registry, Cancer Registry, Primary Health Care Registry (outpatient) and Drug Reimbursement Registry. This study used data from FinnGen Data Freeze 8, which includes 342,499 individuals.\\u003c/p\\u003e \\u003cp\\u003eWe used data from the hospital inpatient, outpatient, primary outpatient, and drug reimbursement registries with International Classification of Diseases (ICD) codes for LD (ICD-10: A69.2, ICD-9: 1048A) and AD (ICD-10: L20, ICD-9: 6918 (6918X excluded), ICD-8: 691). We also retreicved information of sex, age at diagnosis, current age, and cohort.\\u003c/p\\u003e \\u003cp\\u003ePatients and control subjects in FinnGen provided informed consent for biobank research, based on the Finnish Biobank Act. Alternatively, separate research cohorts, collected prior the Finnish Biobank Act came into effect (in September 2013) and start of FinnGen (August 2017), were collected based on study-specific consents and later transferred to the Finnish biobanks after approval by Fimea (Finnish Medicines Agency), the National Supervisory Authority for Welfare and Health. Recruitment protocols followed the biobank protocols approved by Fimea. The Coordinating Ethics Committee of the Hospital District of Helsinki and Uusimaa (HUS) statement number for the FinnGen study is Nr HUS/990/2017.\\u003c/p\\u003e \\u003cp\\u003eThe FinnGen study is approved by Finnish Institute for Health and Welfare (permit numbers: THL/2031/6.02.00/2017, THL/1101/5.05.00/2017, THL/341/6.02.00/2018, THL/2222/6.02.00/2018, THL/283/6.02.00/2019, THL/1721/5.05.00/2019 and THL/1524/5.05.00/2020), Digital and population data service agency (permit numbers: VRK43431/2017-3, VRK/6909/2018-3, VRK/4415/2019-3), the Social Insurance Institution (permit numbers: KELA 58/522/2017, KELA 131/522/2018, KELA 70/522/2019, KELA 98/522/2019, KELA 134/522/2019, KELA 138/522/2019, KELA 2/522/2020, KELA 16/522/2020), Findata permit numbers THL/2364/14.02/2020, THL/4055/14.06.00/2020,,THL/3433/14.06.00/2020, THL/4432/14.06/2020, THL/5189/14.06/2020, THL/5894/14.06.00/2020, THL/6619/14.06.00/2020, THL/209/14.06.00/2021, THL/688/14.06.00/2021, THL/1284/14.06.00/2021, THL/1965/14.06.00/2021, THL/5546/14.02.00/2020, THL/2658/14.06.00/2021, THL/4235/14.06.00/2021 and Statistics Finland (permit numbers: TK-53-1041-17 and TK/143/07.03.00/2020 (earlier TK-53-90-20) TK/1735/07.03.00/2021).\\u003c/p\\u003e \\u003cp\\u003eThe Biobank Access Decisions for FinnGen samples and data utilized in FinnGen Data Freeze 8 include: THL Biobank BB2017_55, BB2017_111, BB2018_19, BB_2018_34, BB_2018_67, BB2018_71, BB2019_7, BB2019_8, BB2019_26, BB2020_1, Finnish Red Cross Blood Service Biobank 7.12.2017, Helsinki Biobank HUS/359/2017, Auria Biobank AB17-5154 and amendment #1 (August 17 2020), AB20-5926 and amendment #1 (April 23 2020), Biobank Borealis of Northern Finland_2017_1013, Biobank of Eastern Finland 1186/2018 and amendment 22 \\u0026sect; /2020, Finnish Clinical Biobank Tampere MH0004 and amendments (21.02.2020 \\u0026amp; 06.10.2020), Central Finland Biobank 1-2017, and Terveystalo Biobank STB 2018001.\\u003c/p\\u003e \\u003c/div\\u003e \\u003cdiv id=\\\"Sec8\\\" class=\\\"Section2\\\"\\u003e \\u003ch2\\u003eData Analysis\\u003c/h2\\u003e \\u003cp\\u003eWe tested associations between LD and AD using logistic regression analysis utilizing the FinnGen data. The models were adjusted for age, sex and cohort. We calculated Cox proportional hazard model with age as the timescale using sex and cohort as covariates, and tested the model assumptions by cox.zph function. In addition, we tested survival with Kaplan\\u0026ndash;Meier estimator using a non-parametric log-rank test. We performed analyses in R version 4.1.0 using packages survminer and survival, and visualizing the results with survminer. A \\u003cem\\u003eP\\u003c/em\\u003e value less than 0.05 was considered statistically significant.\\u003c/p\\u003e \\u003cp\\u003eFor mouse models, GraphPad Prism v9.1.0 was used to develop and analyze graphs, utilizing two-way ANOVA and by Šid\\u0026aacute;k\\u0026rsquo;s multiple comparisons correction test for significance of \\u003cem\\u003eP\\u003c/em\\u003e \\u0026lt; 0.05.\\u003c/p\\u003e\"},{\"header\":\"Results\",\"content\":\"\\u003cdiv id=\\\"Sec9\\\" class=\\\"Section3\\\"\\u003e \\u003ch2\\u003e24-month-long chronic infection initiated in young mice leads to severe dermatitis of the tail\\u003c/h2\\u003e \\u003cp\\u003eIn our ongoing studies using a murine model of LD, we observed that many mice which had been infected with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e, and never treated with antibiotics, developed dermatitis. This dermatitis ranged in severity, with some aged animals developing dermatitis severe enough to warrant compassionate euthanasia. In order to determine the nature and cause of the dermatitis, and how it may relate to age, we infected 8-week-old female C3H/HeJ mice and closely examined them for 24 months, compared to uninfected age-matched control mice (Figure \\u003cspan refid=\\\"Fig2\\\" class=\\\"InternalRef\\\"\\u003e1\\u003c/span\\u003e). Visualization of the mouse tail by light microscopy showed severe dermatitis in the infected mice. External features of the phenotypic tails included hair loss, skin flaking, hyperpigmentation, hemorrhaging, and ulceration.\\u003c/p\\u003e\\u003cp\\u003e \\u003cspan type=\\\"BoldItalic\\\" class=\\\"BoldItalic\\\" name=\\\"Emphasis\\\"\\u003eGross pathology scores of affected skin are significantly higher in aged mice with acute Lyme disease\\u003c/span\\u003e \\u003c/p\\u003e \\u003cp\\u003eAging is known to cause immune system dysfunction and increased susceptibility to disease and infection.\\u003csup\\u003e26\\u003c/sup\\u003e To further investigate the impact of age on the onset and severity of dermatitis symptoms in the tails of mice with LD, we set up an experiment of acute Lyme disease in female C3H/HeJ mice of various ages at the time of infection: 6 weeks, 1 year, and 2 years (Figure \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eB, \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eD, and \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eF). Tails of infected mice were directly compared with age-matched uninfected controls: 6 weeks, 1 year, 2 years (Figure \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eA, \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eC, \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eE). Two months post-infection, the mice were humanely euthanized and whole tails were evaluated by light microscopy (Figure \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003e). Mice infected at 6 weeks of age (Figure \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eB) show a minimal difference in tail condition compared to age-matched, uninfected mice (Figure \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eA). Mice infected at 1 year of age present with disorganized hair growth, varying degrees of hair loss, skin flaking, dark lesions and hemorrhaging (Figure \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eD). Age-matched, 1-year-old uninfected controls show no pathology (Figure \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eC). Mice infected at 2 years of age developed severe dermatitis with complete hair loss, skin flaking, dark lesions, hemorrhaging and damaged or missing distal tail tip (Figure \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eF). Tails of 2-year-old age-matched, uninfected mice showed disorganized hair growth consistent with natural aging phenotypes of C3H/HeJ mice (Figure \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eE). Surprisingly, the severe pathology of the acutely (2 month) infected 2-year-old mice (Figure \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eF) is grossly indistinguishable from the chronically (24 month) infected mice (Figure \\u003cspan refid=\\\"Fig2\\\" class=\\\"InternalRef\\\"\\u003e1\\u003c/span\\u003eB).\\u003c/p\\u003e \\u003cp\\u003eExternal pathology was quantified for all cohorts and analyzed using two-way ANOVA followed by Šid\\u0026aacute;k\\u0026rsquo;s multiple comparisons test (\\u003cem\\u003eP\\u003c/em\\u003e \\u0026lt; 0.005). Mice acutely infected at 6 weeks of age had minimal statistically significant differences in tail pathology to their uninfected controls (\\u003cem\\u003eP\\u003c/em\\u003e \\u0026lt;0.05, LS mean difference = 1.00, 95% CI [0.08154, 1.918]). Substantially greater statistical difference is seen in 1- and 2-year-old mice compared to their respective age-matched uninfected controls (\\u003cem\\u003eP\\u003c/em\\u003e \\u0026lt;0.0005, LS mean = 3.25, 95% CI [2.223, 4.277] and \\u003cem\\u003eP\\u003c/em\\u003e \\u0026lt;0.0005, LS mean = 4.10, 95% CI 3.885, 5.315]) (Figure \\u003cspan refid=\\\"Fig1\\\" class=\\\"InternalRef\\\"\\u003e2\\u003c/span\\u003eG). Tail pathology external scoring and quantification parameters are detailed in the methods. Score values for tail pathologies in individual mice are shown in Supplementary Table 1.\\u003c/p\\u003e \\u003cp\\u003e \\u003cspan type=\\\"BoldItalic\\\" class=\\\"BoldItalic\\\" name=\\\"Emphasis\\\"\\u003eFeatures of atopic dermatitis found in histopathology of affected skin from mice acutely infected with B. burgdorferi show increased severity with advanced age\\u003c/span\\u003e \\u003c/p\\u003e \\u003cp\\u003eHuman atopic dermatitis is commonly a clinical diagnosis and biopsies are only rarely performed in the evaluation.\\u003csup\\u003e14\\u003c/sup\\u003e Similar to human histopathology, murine AD presents with varying levels of acanthosis, spongiosis, and perivascular inflammation.\\u003csup\\u003e19\\u003c/sup\\u003e Another commonly observed feature of human atopic dermatitis, which is observed in the \\u003cem\\u003eB. burgdorferi-\\u003c/em\\u003einfected mice of this study, is post-inflammatory hyperpigmentation of the skin, which is pigmentation that occurs after resolution of inflammatory skin eruptions.\\u003csup\\u003e27\\u003c/sup\\u003e Gross pathology identified the development of age-dependent dermatitis on the tails of C3H/HeJ mice acutely infected (2 months) with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e in 3 different age groups (6 week, 1 year, 2 years). Tails from these mice were then processed for histology.\\u003c/p\\u003e \\u003cp\\u003eTransverse cross sections from the caudal, medial, and distal tail regions from these age-macthed uninfected and infected mice were stained with H\\u0026amp;E for evaluation (Supplementary Figure 1). Epidermal regions of the tail were closely evaluated for features of dermatitis (Figure \\u003cspan refid=\\\"Fig3\\\" class=\\\"InternalRef\\\"\\u003e3\\u003c/span\\u003e). Mice infected with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e at 6 weeks of age showed lack of histopathologic findings (Figure \\u003cspan refid=\\\"Fig3\\\" class=\\\"InternalRef\\\"\\u003e3\\u003c/span\\u003eB). Mice infected at 1 year of age developed acanthosis, spongiosis and mild thickening of the stratum corneum, as visualized by sections of the tail skin (Figure \\u003cspan refid=\\\"Fig3\\\" class=\\\"InternalRef\\\"\\u003e3\\u003c/span\\u003eD). Mice infected at 2 years of age showed the most significant pathology with more severe acanthosis accompanied by elongated rete ridges, spongiosis and hyperkeratosis (Figure \\u003cspan refid=\\\"Fig3\\\" class=\\\"InternalRef\\\"\\u003e3\\u003c/span\\u003eF). All mice infected at 1 and 2 years of age also showed loss of hair follicles and post-inflammatory hyperpigmentation consistent with observations from gross examination.\\u003c/p\\u003e \\u003cp\\u003eThe assigned scores for both external and internal pathology were then compared via heat map which revealed strong associations (Supplementary Figure 2). For each mouse, internal scores of acanthosis and spongiosis were summated and graphed against their respective external score (Supplementary Figure 2A). Individual mice with severe external features of AD additionally had congruent histopathologic findings. Likewise, uninfected mice had low scores for both external and internal AD pathology.\\u003c/p\\u003e \\u003cp\\u003e \\u003cspan type=\\\"BoldItalic\\\" class=\\\"BoldItalic\\\" name=\\\"Emphasis\\\"\\u003eMast cells localize to atopic dermatitis lesions consistent with age-dependent severity in mice with acute Lyme disease\\u003c/span\\u003e \\u003c/p\\u003e \\u003cp\\u003eMast cells (MC) are key mediators of the T\\u003csub\\u003eH\\u003c/sub\\u003e2 immune response and are classically involved with allergy and IgE-mediated inflammation.\\u003csup\\u003e28\\u003c/sup\\u003e Several studies have implicated MC involvement in AD pathogenesis, including IgE-mediated sensitization to environmental allergens as a typical feature of human AD.\\u003csup\\u003e21\\u003c/sup\\u003e Further, \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e spirochetes are capable of inducing mast cell degranulation.\\u003csup\\u003e29\\u003c/sup\\u003e We therefore investigated if the age-dependent pattern of AD severity seen in C3H/HeJ mice with LD may be correlated with MC localization to these lesions.\\u003c/p\\u003e \\u003cp\\u003eTail sections from mice infected with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e at ages of 6 weeks, 1 year, and 2 years along with their aged matched uninfected controls were stained antibodies against CD117, a receptor tyrosine kinase and mast cell marker (Figure \\u003cspan refid=\\\"Fig4\\\" class=\\\"InternalRef\\\"\\u003e4\\u003c/span\\u003eA-F). During analysis, mast cells were classified by cellular shape and CD117 stain intensity. All positively identified MC within the dermis of a single tail section were quantified for all cohorts and analyzed using two-way ANOVA followed by Šid\\u0026aacute;k\\u0026rsquo;s multiple comparisons test (P \\u0026lt; 0.005).\\u003c/p\\u003e\\u003cp\\u003eInterestingly, both acutely infected 1- and 2-year old mice groups had substantial MC localization to the AD lesions (Figure \\u003cspan refid=\\\"Fig4\\\" class=\\\"InternalRef\\\"\\u003e4\\u003c/span\\u003eG). Mice infected at 1 year of age (\\u003cem\\u003eP\\u003c/em\\u003e = 0.005, LS mean = 16, 95% CI 6.715, 25.29]) or 2 years of age (\\u003cem\\u003eP\\u003c/em\\u003e = 0.0002, LS mean = 20.72, 95% CI [10.17, 31.28]) had significantly more MCs in the dermal layer of the tail than their age-matched, uninfected controls. In contrast, mice infected at 6 weeks of age had no significant difference in MC count compared to their respective uninfected controls (\\u003cem\\u003eP\\u003c/em\\u003e = 0.74, LS mean = 2.667, 95% CI [-6.619, 11.95]).\\u003c/p\\u003e \\u003c/div\\u003e \\u003cdiv id=\\\"Sec10\\\" class=\\\"Section3\\\"\\u003e \\u003ch2\\u003eLyme disease associates with atopic dermatitis in humans\\u003c/h2\\u003e \\u003cp\\u003eRecent large scale cohorts have provided means to explore epidemiological correlates leveraging on electronic health records. Using electronic health records comprising 342,499 individuals in FinnGen we identified 5,248 individuals with LD; 444 individuals from hospital inpatient, 1,317 individuals from hospital outpatient and 3,487 individuals from primary outpatient registries. We identified 17,233 individuals with AD; 3,063 individuals from hospital inpatient, 7,841 individuals from hospital outpatient, 5,796 individuals from primary outpatient and 533 individuals from drug reimbursement registries with 298 individuals with both LD and AD, and the majority of individuals being disease free for LD or AD (n = 320,316) (Figure \\u003cspan refid=\\\"Fig5\\\" class=\\\"InternalRef\\\"\\u003e5\\u003c/span\\u003eA).\\u003c/p\\u003e\\u003cp\\u003eOverall, we identified 298 prevalent cases that had diagnosis for both AD and LD, and 85 incident cases that had AD diagnosis after LD diagnosis. AD was more frequent in individuals with LD (5.7% in individuals with LD vs. 5.0% in individuals without LD) (Figure \\u003cspan refid=\\\"Fig5\\\" class=\\\"InternalRef\\\"\\u003e5\\u003c/span\\u003eA).\\u003c/p\\u003e \\u003cp\\u003eThe association between LD and AD was statistically significant (OR = 1.91 [1.68 -2.37], \\u003cem\\u003eP\\u003c/em\\u003e \\u0026lt; 2e-16). We estimated the severity of LD infection by dividing the number of diagnoses into two categories; 3 or more LD diagnoses vs. 1 LD diagnosis. We excluded individuals who had AD diagnosis prior to LD diagnosis (N remaining = 4,373 individuals with LD, 75 participants with LD and AD diagnosis). First, we calculated logistic regression model and discovered that LD with more than 3 diagnoses was significantly associated with increased risk for AD (OR=2.19[1.35-3.55], \\u003cem\\u003eP\\u003c/em\\u003e=0.0014). In addition, we estimated temporal effect by Cox-proportional hazard model using age as the timescale showing corresponding result (HR=2.26[1.54-3.95], \\u003cem\\u003eP\\u003c/em\\u003e=0.0017). Finally, we calculated Kaplan Meier estimates demonstrating that survival probability differed significantly between groups 3 or more LD diagnoses vs. 1 LD diagnosis. Consequently, we show that patients in the 1 LD diagnosis group had a higher AD free survival percentage compared to individuals in the 3 or more LD group (P = 4.0e-5) (Figure \\u003cspan refid=\\\"Fig5\\\" class=\\\"InternalRef\\\"\\u003e5\\u003c/span\\u003eB).\\u003c/p\\u003e \\u003c/div\\u003e \\u003c/div\\u003e\"},{\"header\":\"Discussion\",\"content\":\"\\u003cp\\u003eClassic phenotypes of Lyme disease in humans after acute \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e infection include skin manifestations of various clinical phenotypes such as the erythema migrans, but this varies significantly across humans. New onset of chronic dermatologic conditions after LD have not been well investigated. The C3H/HeJ mouse model is frequently used in LD research because it presents with both arthritis and carditis. However, we observed that female C3H/HeJ mice chronically infected with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e often developed severe dermatitis of the tail. Since the mouse tail skin shares more similarity with human skin as compared to areas of skin with dense fur, we focused on this tissue to investigate this dermatitis further. Due to the absence of noticeable dermatitis in younger infected mice, we investigated whether dermatitis in older infected mice was primarily driven by the length of infection or the age of the host animal at the time of infection.\\u003c/p\\u003e \\u003cp\\u003eWe developed a numeric scoring system to assess the external pathology and internal histology of murine skin. Higher scores were associated with more severe pathology. Both internal and external scoring increasingly worsened with age and we found a strong correlation between increased age and AD severity of the tail among \\u003cem\\u003eB. burgdorferi-\\u003c/em\\u003einfected mice. Interestingly, internal and external scores of both acutely (2 months) infected 2-year-old mice, and mice who had been chronically (24 months) infected since 8 weeks old, both resulted in severe pathologic changes of hair loss, skin flaking, hyperpigmentation, and ulceration. The youngest mice (6 weeks old) did not develop features of AD within the 2-month observation period before euthanasia. While natural aging does impact hair growth and tissue quality in uninfected controls, the infection consistently and significantly amplified the extent of AD lesions on the tails of mice with LD. These lesions were also associated with increased mast cell infiltration to the tail dermis.\\u003c/p\\u003e \\u003cp\\u003eGiven the dermatologic findings we observed in both acutely and chronically infected aged mice, we were curious to see if Lyme disease was also associated with atopic dermatitis in humans through analysis of clinically diagnosed LD and AD patients from FinnGen in 342,499 individuals. We found a significant association between LD and AD. Among people with LD, there was a higher prevalence of AD than among the general population. Approximately 90% of individuals who are diagnosed with acute LD recover without complications, and therefore we further divided the individuals with LD in FinnGen into a subset who had one medical visit due to LD and a subset who had three or more visits. We observed an association with AD and the number of visits due to LD, which may reflect disease severity. Consequently, those individuals who have several healthcare visits due to LD may have a higher risk for AD than individuals with only one visit.\\u003c/p\\u003e \\u003cp\\u003eIncreased age can have damaging effects on immune system regulation and host defenses, while also raising the risk for inflammatory conditions.\\u003csup\\u003e28\\u003c/sup\\u003e Age-related defects in critical mechanisms such as production of pro-inflammatory cytokines (TNF-⍺ and IFN-\\u0026#120574;) and terminal differentiation of keratinocytes can induce differential phenotypes of the epidermis.\\u003csup\\u003e29\\u003c/sup\\u003e Mast cells are a major effector cell type implicated in pathogenesis of human AD through the release of proinflammatory mediators and IgE-mediated sensitization of environmental allergens.\\u003csup\\u003e21\\u003c/sup\\u003e Utilizing mouse models, mast cells have also been implicated in other age-related pathologic mechanisms, such as damage to lung endothelial tissue due to MC-mediated neutrophil migration.\\u003csup\\u003e30\\u003c/sup\\u003e Existing literature exploring the role of MC in LD is limited; however, evaluation of gerbils infected with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e showed significant histopathologic changes, including MC infiltration of the extracellular matrix surrounding major organs.\\u003csup\\u003e31\\u003c/sup\\u003e As LD is an illness primarily characterized by inflammation of the joints, infection with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e could contribute to mast cell dysregulation and possibly lead to a higher risk of developing inflammatory diseases such as AD.\\u003c/p\\u003e \\u003cp\\u003eAged female C3H/HeJ mice with acute and chronic LD present with AD of the tail that is indistinguishable by gross evaluation and histology; a finding that was not observed in uninfected age-matched controls or in young mice. This phenotype establishes a significant association between age of host with LD and onset of AD. We provide a numeric scale to quantify severity of AD, both internally and externally. This work also supports utilization of the C3H/HeJ mouse model in further study of lyme-disease associated AD. The corroborating human data from FinnGen also bolsters the validity of a novel relationship between age, Lyme disease, and atopic dermatitis.\\u003c/p\\u003e\"},{\"header\":\"Limitations\",\"content\":\"\\u003cp\\u003eImportantly, the mouse tails in this study which presented with AD were not evaluated for presence of \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e spirochetes, although expected, as \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e is frequently found in the tail tissue of infected wild caught mice.\\u003csup\\u003e32\\u003c/sup\\u003e\\u003c/p\\u003e \\u003cp\\u003eSymptoms of hair loss, ulceration, and tail tip disfiguration could be exacerbated by mouse self-mutilation induced from pruritus, or itch. Mice used for this study were not monitored for behavior, so frequency and severity of self-scratching or biting cannot be determined. When external tail pathology was observed, it was present in all mice of a single cage, suggesting that the pathology was not due to aggressive behaviors between individual mice.\\u003c/p\\u003e \\u003cp\\u003eOur histological analyses of the whole tail sections find two of the three key features of atopic dermatitis: spongiosis and acanthosis. As PVI is not commonly observed in the C3H/HeJ mouse strain, the presence of spongiosis and acanthosis are used to determine atopic dermatitis even in the absence of PVI.\\u003c/p\\u003e \\u003cp\\u003eThe human disease association data from FinnGen may reflect more severe pathology since FinnGen is enriched for hospital level diagnoses. The enrichment for hospital level diagnoses may result in larger effect sizes than what may be observed in more benign pathology or in outpatient only data. Furthermore, the number of LD diagnoses have increased substantially during the last ten years. In the sample population found in FinnGen, the median age of patients diagnosed with AD was 32.9 years, and the median age of the LD population was 63.9 years. The recent shift in frequency of diagnoses of LD and the earlier age of diagnosis in AD may affect our power to examine any temporal associations between LD and AD that we conduct in this patient population. Some of these limitations can be addressed in the future with larger data sets and with longer follow-up.\\u003c/p\\u003e\"},{\"header\":\"Abbreviations\",\"content\":\"\\u003cp\\u003e\\u003cimg 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APPROVAL/CONSENT TO PARTICIPATE\\u003c/strong\\u003e\\u003c/p\\u003e\\n\\u003cp\\u003eAnimal studies were performed at the Stanford School of Medicine Association for Assessment and Accreditation of Laboratory Animal Care International (AAALAC) accredited Rodent Animal Facility (Palo Alto, CA). All procedures and care guidelines were approved by the Stanford University Administrative Panel on Laboratory Animal Care (Protocol #30109).\\u0026nbsp;\\u003c/p\\u003e\\n\\u003cp\\u003ePatients and control subjects in FinnGen provided informed consent for biobank research, based on the Finnish Biobank Act. Alternatively, separate research cohorts, collected prior the Finnish Biobank Act came into effect (in September 2013) and start of FinnGen (August 2017), were collected based on study-specific consents and later transferred to the Finnish biobanks after approval by Fimea (Finnish Medicines Agency), the National Supervisory Authority for Welfare and Health. Recruitment protocols followed the biobank protocols approved by Fimea. The Coordinating Ethics Committee of the Hospital District of Helsinki and Uusimaa (HUS) statement number for the FinnGen study is Nr HUS/990/2017.\\u003c/p\\u003e\\n\\u003cp\\u003e\\u003cstrong\\u003eCONSENT FOR PUBLICATION - \\u003c/strong\\u003eNot Applicable\\u003c/p\\u003e\\n\\u003cp\\u003e\\u003cstrong\\u003eAVAILABILITY OF DATA \\u0026amp; MATERIALS\\u003c/strong\\u003e\\u003c/p\\u003e\\n\\u003cp\\u003eAll data and associated analyses conducted within this study will be made available by the corresponding author upon reasonable request.\\u003c/p\\u003e\\n\\u003cp\\u003e\\u003cstrong\\u003eCONFLICT OF INTEREST\\u003c/strong\\u003e\\u003c/p\\u003e\\n\\u003cp\\u003eNone of the authors have any conflicts of research regarding the research presented in this manuscript.\\u0026nbsp;\\u003c/p\\u003e\\n\\u003cp\\u003e\\u003cstrong\\u003eFUNDING\\u003c/strong\\u003e\\u003c/p\\u003e\\n\\u003cp\\u003eResearch reported in this publication was supported by the Fairbairn family foundation; the Younger family foundation; the Robert J. Kleberg, Jr., and Helen C. Kleberg Foundation; Bay Area Lyme Foundation; the Virginia and D. K. Ludwig Fund for Cancer Research; M.C.T. and Y.Y.Y. were supported by Stanford Immunology training grant 5T32AI007290, and M.C.T. was also supported by the NIH NRSA 1 F32 AI124558-01 award. S.D.G. was supported by the California Institute for Regenerative Medicine Bridges 2.0 Grant EDUC2-08397. L.B.T.D. was supported by a Stanford Diversifying Academia Recruiting Excellence Fellowship.\\u0026nbsp;\\u003c/p\\u003e\\n\\u003cp\\u003eThe FinnGen project is funded by two grants from Business Finland (HUS 4685/31/2016 and UH 4386/31/2016) and the following industry partners: AbbVie Inc., AstraZeneca UK Ltd, Biogen MA Inc., Bristol Myers Squibb (and Celgene Corporation \\u0026amp; Celgene International II S\\u0026agrave;rl), Genentech Inc., Merck Sharp \\u0026amp; Dohme Corp, Pfizer Inc., GlaxoSmithKline Intellectual Property Development Ltd., Sanofi US Services Inc., Maze Therapeutics Inc., Janssen Biotech Inc, Novartis AG, and Boehringer Ingelheim. Following biobanks are acknowledged for delivering biobank samples to FinnGen: Auria Biobank (www.auria.fi/biopankki), THL Biobank (www.thl.fi/biobank), Helsinki Biobank (www.helsinginbiopankki.fi), Biobank Borealis of Northern Finland (https://www.ppshp.fi/Tutkimus-ja-opetus/Biopankki/Pages/Biobank-Borealis-briefly-in-English.aspx), Finnish Clinical Biobank Tampere (www.tays.fi/en-US/Research_and_development/Finnish_Clinical_Biobank_Tampere), Biobank of Eastern Finland (www.ita-suomenbiopankki.fi/en), Central Finland Biobank (www.ksshp.fi/fi-FI/Potilaalle/Biopankki), Finnish Red Cross Blood Service Biobank (www.veripalvelu.fi/verenluovutus/biopankkitoiminta) and Terveystalo Biobank (www.terveystalo.com/fi/Yritystietoa/Terveystalo-Biopankki/Biopankki/). All Finnish Biobanks are members of BBMRI.fi infrastructure (www.bbmri.fi). Finnish Biobank Cooperative -FINBB (https://finbb.fi/) is the coordinator of BBMRI-ERIC operations in Finland. The Finnish biobank data can be accessed through the Fingenious\\u003csup\\u003e\\u0026reg;\\u0026nbsp;\\u003c/sup\\u003eservices (https://site.fingenious.fi/en/) managed by FINBB. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.\\u0026nbsp;\\u003c/p\\u003e\\n\\u003cp\\u003e\\u003cstrong\\u003eAUTHORS\\u0026rsquo; CONTRIBUTIONS\\u003c/strong\\u003e\\u003c/p\\u003e\\n\\u003cp\\u003eB.T.L. and M.S. carried out initial infections and observations. S.G. and G.B. contributed to subsequent infections and observations. B.T.L., L.B.T.D., P.M., P.H., and Y.Y.Y.conducted endpoint tissue procurement. S.G. prepared samples for histopathology and contributed to histopathology analysis. A.S. and E.G. conducted primary analysis of histopathology and murine diagnosis. The FinnGen Project was utilized for human epidemiological data that was studied and analyzed by S.S. and H.O. S.G. wrote the manuscript with B.T.L. Subsequent manuscript contributions and edits were made by M.C.T., E.S., S.S., H.O., S.G., BT.L., P.H., G.B. and AS. B.T.L., S.S., and H.O. created figures with contributions by M.C.T., S.G., G.B., E.S., and P.H. M.C.T. and I.L.W. supervised all experiments and writing of the manuscript. All authors read and approved the final manuscript. \\u0026nbsp;\\u0026nbsp;\\u003c/p\\u003e\\n\\u003cp\\u003e\\u003cstrong\\u003eACKNOWLEDGEMENTS\\u0026nbsp;\\u003c/strong\\u003e\\u003c/p\\u003e\\n\\u003cp\\u003eThe authors wish to thank members of the Weissman Lab at the Institute for Stem Cell Biology \\u0026amp; Regenerative Medicine at Stanford University School of Medicine and Histowiz for their processing of our histological samples. We want to acknowledge the participants and investigators of the FinnGen study.\\u0026nbsp;\\u003c/p\\u003e\"},{\"header\":\"References\",\"content\":\"\\u003col\\u003e\\n \\u003cli\\u003e\\u003cspan\\u003eSteere AC, Strle F, Wormser GP, Hu LT, Branda JA, Hovius JW, Li X, Mead PS. Lyme borreliosis. Nat Rev Dis Primers. 2016 Dec 15;2:16090. doi: \\u003cspan class=\\\"ExternalRef\\\"\\u003e\\u003cspan class=\\\"RefSource\\\"\\u003e10.1038/nrdp.2016.90\\u003c/span\\u003e\\u003c/span\\u003e. Erratum in: Nat Rev Dis Primers. 2017 Aug 03;3:17062. PMID: 27976670; PMCID: PMC5539539.\\u003c/span\\u003e\\u003c/li\\u003e\\n \\u003cli\\u003e\\u003cspan\\u003eCenters for Disease Control and Prevention. (2021, April 29). \\u003cem\\u003eData and surveillance\\u003c/em\\u003e. Centers for Disease Control and Prevention. 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Published 2018 Jun 21. doi:\\u003cspan class=\\\"ExternalRef\\\"\\u003e\\u003cspan class=\\\"RefSource\\\"\\u003e10.1038/s41572-018-0001-z -\\u003c/span\\u003e\\u003c/span\\u003e.\\u003c/span\\u003e\\u003c/li\\u003e\\n \\u003cli\\u003e\\u003cspan\\u003eDainichi T, Kitoh A, Otsuka A, Nakajima S, Nomura T, Kaplan DH, Kabashima K. The epithelial immune microenvironment (EIME) in atopic dermatitis and psoriasis. Nat Immunol. 2018;19(12):1286\\u0026ndash;98. \\u003cspan class=\\\"ExternalRef\\\"\\u003e\\u003cspan class=\\\"RefSource\\\"\\u003ehttps://doi.org/10.1038/s41590-018-0256-2\\u003c/span\\u003e\\u003c/span\\u003e.\\u003c/span\\u003e\\u003c/li\\u003e\\n \\u003cli\\u003e\\u003cspan\\u003eTsoi LC, Rodriguez E, St\\u0026ouml;lzl D, Wehkamp U, Sun J, Gerdes S, Sarkar MK, H\\u0026uuml;benthal M, Zeng C, Uppala R, Xing X, Thielking F, Billi AC, Swindell WR, Shefler A, Chen J, Patrick MT, Harms PW, Kahlenberg JM, Perez White BE, Maverakis E, Gudjonsson JE, Weidinger S. 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Erratum in: J Allergy Clin Immunol. 2015 Dec;136(6):1710. PMID: 24084074; PMCID: PMC3834151.\\u003c/span\\u003e\\u003c/li\\u003e\\n \\u003cli\\u003e\\u003cspan\\u003eMorais KL, Miyamoto D, Maruta CW, Aoki V. Diagnostic approach of eosinophilic spongiosis. An Bras Dermatol. 2019;94:724\\u0026ndash;8.\\u003c/span\\u003e\\u003c/li\\u003e\\n \\u003cli\\u003e\\u003cspan\\u003eSingh B, Shinagawa K, Taube C, Gelfand EW, Pabst R. Strain-specific differences in perivascular inflammation in lungs in two murine models of allergic airway inflammation. Clin Exp Immunol. 2005;141(2):223\\u0026ndash;9. doi:\\u003cspan class=\\\"ExternalRef\\\"\\u003e\\u003cspan class=\\\"RefSource\\\"\\u003e10.1111/j.1365-2249.2005.02841.x\\u003c/span\\u003e\\u003c/span\\u003e.\\u003c/span\\u003e\\u003c/li\\u003e\\n \\u003cli\\u003e\\u003cspan\\u003eAlsaad KO, Ghazarian D. My approach to superficial inflammatory dermatoses. 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Real-time high resolution 3D imaging of the lyme disease spirochete adhering to and escaping from the vasculature of a living host. PLoS Pathog. 2008;4(6):e1000090. \\u003cspan class=\\\"ExternalRef\\\"\\u003e\\u003cspan class=\\\"RefSource\\\"\\u003ehttps://doi.org/10.1371/journal.ppat.1000090\\u003c/span\\u003e\\u003c/span\\u003e.\\u003c/span\\u003e\\u003c/li\\u003e\\n \\u003cli\\u003e\\u003cspan\\u003eMecklenburg L, Kusewitt D, Kolly C, Treumann S, Adams ET, Diegel K, Yamate J, Kaufmann W, M\\u0026uuml;ller S, Danilenko D, Bradley A. Proliferative and non-proliferative lesions of the rat and mouse integument. J Toxicol Pathol. 2013;26(3 Suppl):27S\\u0026ndash;57S. doi:\\u003cspan class=\\\"ExternalRef\\\"\\u003e\\u003cspan class=\\\"RefSource\\\"\\u003e10.1293/tox.26.27\\u003c/span\\u003e\\u003c/span\\u003eS. PMID: 25035577; PMCID: PMC4091526.\\u003c/span\\u003e\\u003c/li\\u003e\\n \\u003cli\\u003e\\u003cspan\\u003eWeyand CM, Goronzy JJ. Aging of the Immune System. 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PMID: 34033752; PMCID: PMC8284598.\\u003c/span\\u003e\\u003c/li\\u003e\\n \\u003cli\\u003e\\u003cspan\\u003ePreac Mursic V, Patsouris E, Wilske B, Reinhardt S, Gross B, Mehraein P. Persistence of Borrelia burgdorferi and histopathological alterations in experimentally infected animals. A comparison with histopathological findings in human Lyme disease. Infection. 1990 Nov-Dec;18(6):332-41. doi: \\u003cspan class=\\\"ExternalRef\\\"\\u003e\\u003cspan class=\\\"RefSource\\\"\\u003e10.1007/BF01646399\\u003c/span\\u003e\\u003c/span\\u003e. PMID: 2076905.\\u003c/span\\u003e\\u003c/li\\u003e\\n \\u003cli\\u003e\\u003cspan\\u003eZawada SG, von Fricken ME, Weppelmann TA, Sikaroodi M, Gillevet PM. Optimization of tissue sampling for Borrelia burgdorferi in white-footed mice (Peromyscus leucopus). PLoS One. 2020 Jan 24;15(1):e0226798. doi: \\u003cspan class=\\\"ExternalRef\\\"\\u003e\\u003cspan class=\\\"RefSource\\\"\\u003e10.1371/journal.pone.0226798\\u003c/span\\u003e\\u003c/span\\u003e. PMID: 31978068; PMCID: PMC6980393.\\u003c/span\\u003e\\u003c/li\\u003e\\n\\u003c/ol\\u003e\"}],\"fulltextSource\":\"\",\"fullText\":\"\",\"funders\":[],\"hasAdminPriorityOnWorkflow\":false,\"hasManuscriptDocX\":true,\"hasOptedInToPreprint\":true,\"hasPassedJournalQc\":\"\",\"hasAnyPriority\":false,\"hideJournal\":true,\"highlight\":\"\",\"institution\":\"\",\"isAcceptedByJournal\":false,\"isAuthorSuppliedPdf\":false,\"isDeskRejected\":\"\",\"isHiddenFromSearch\":false,\"isInQc\":false,\"isInWorkflow\":true,\"isPdf\":false,\"isPdfUpToDate\":true,\"isWithdrawnOrRetracted\":false,\"journal\":{\"display\":true,\"email\":\"info@researchsquare.com\",\"identity\":\"researchsquare\",\"isNatureJournal\":false,\"hasQc\":true,\"allowDirectSubmit\":true,\"externalIdentity\":\"\",\"sideBox\":\"\",\"snPcode\":\"\",\"submissionUrl\":\"/submission\",\"title\":\"Research Square\",\"twitterHandle\":\"researchsquare\",\"acdcEnabled\":true,\"dfaEnabled\":false,\"editorialSystem\":\"\",\"reportingPortfolio\":\"\",\"inReviewEnabled\":false,\"inReviewRevisionsEnabled\":true},\"keywords\":\"Lyme disease, atopic dermatitis, histology, pathology, allergy, skin, murine model, Borrelia burgdorferi, spirochete, borreliosis\",\"lastPublishedDoi\":\"10.21203/rs.3.rs-1316212/v1\",\"lastPublishedDoiUrl\":\"https://doi.org/10.21203/rs.3.rs-1316212/v1\",\"license\":{\"name\":\"CC BY 4.0\",\"url\":\"https://creativecommons.org/licenses/by/4.0/\"},\"manuscriptAbstract\":\"\\u003ch2\\u003eBackground\\u003c/h2\\u003e \\u003cp\\u003e \\u003cem\\u003eBorrelia burgdorferi\\u003c/em\\u003e is a bacterial spirochete that can cause Lyme disease after infecting a susceptible host. Immune responses to the bacteria are highly variable and host specific. The murine substrain, C3H/HeJ, is one of the most frequently utilized mouse models for Lyme disease. In this study, we sought to investigate the correlation of age with onset and severity of dermatitis, both in C3H/HeJ mice infected with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e as well as humans who have had a diagnosis of Lyme disease.\\u003c/p\\u003e\\u003ch2\\u003eMethods\\u003c/h2\\u003e \\u003cp\\u003eFemale C3H/HeJ mice aged 6-8 weeks, 1 year, or 2 years were infected intraperitoneally with 10\\u003csup\\u003e5\\u003c/sup\\u003e \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e. Dermatitis of the tail was evaluated by gross examination and histology. Human data via electronic health records of 342,499 Finnish individuals was tested and analyzed for associations between Lyme disease and atopic dermatitis.\\u003c/p\\u003e\\u003ch2\\u003eResults\\u003c/h2\\u003e \\u003cp\\u003eDermatitis worsened over the course of untreated infection, with ulceration, hemorrhaging, flaking, hair loss, and dark lesions as well as spongiosis and acanthosis. These features of dermatitis were present in infected mice after 1 year of age. This relationship among Lyme disease, atopic dermatitis, and host age seen in the C3H/HeJ mouse model is consistent with a large pool (342,499) of human epidemiological data from Finland. We identified 5,248 individuals with Lyme disease and 17,233 with atopic dermatitis in FinnGen. Retrospective analysis shows Lyme disease is associated with atopic dermatitis (OR = 1.91 [1.68 -2.37], \\u003cem\\u003eP\\u003c/em\\u003e \\u0026lt; 2e\\u003csup\\u003e\\u0026minus;16\\u003c/sup\\u003e). More visits due to Lyme disease complications (3 or more visits versus 1 visit) were associated with atopic dermatitis (OR = 2.19 [1.35-3.55], \\u003cem\\u003eP\\u003c/em\\u003e = 0.0014) and risk of developing atopic dermatitis over time (HR=2.26 [1.54-3.95], \\u003cem\\u003eP\\u003c/em\\u003e = 0.0017).\\u003c/p\\u003e\\u003ch2\\u003eConclusion\\u003c/h2\\u003e \\u003cp\\u003eData from mice and humans reveal a novel relationship among Lyme disease, age, and atopic dermatitis. Through defined pathological scoring, we demonstrate the onset of murine atopic dermatitis with \\u003cem\\u003eB. burgdorferi\\u003c/em\\u003e infection, which is further exacerbated by host age at time of infection. In humans, a diagnosis of Lyme disease in FinnGen was associated with atopic dermatitis and further research is warranted to establish causation.\\u003c/p\\u003e\",\"manuscriptTitle\":\"Novel Association of Lyme Disease, Age, and Atopic Dermatitis\",\"msid\":\"\",\"msnumber\":\"\",\"nonDraftVersions\":[{\"code\":1,\"date\":\"2022-02-09 16:57:07\",\"doi\":\"10.21203/rs.3.rs-1316212/v1\",\"editorialEvents\":[{\"type\":\"communityComments\",\"content\":0}],\"status\":\"published\",\"journal\":{\"display\":true,\"email\":\"info@researchsquare.com\",\"identity\":\"researchsquare\",\"isNatureJournal\":false,\"hasQc\":true,\"allowDirectSubmit\":true,\"externalIdentity\":\"\",\"sideBox\":\"\",\"snPcode\":\"\",\"submissionUrl\":\"/submission\",\"title\":\"Research Square\",\"twitterHandle\":\"researchsquare\",\"acdcEnabled\":true,\"dfaEnabled\":false,\"editorialSystem\":\"\",\"reportingPortfolio\":\"\",\"inReviewEnabled\":false,\"inReviewRevisionsEnabled\":true}}],\"origin\":\"\",\"ownerIdentity\":\"1f94b94d-55a3-42d9-b53a-1de079b05171\",\"owner\":[],\"postedDate\":\"February 9th, 2022\",\"published\":true,\"recentEditorialEvents\":[],\"rejectedJournal\":[],\"revision\":\"\",\"amendment\":\"\",\"status\":\"posted\",\"subjectAreas\":[],\"tags\":[],\"updatedAt\":\"2022-07-26T19:17:03+00:00\",\"versionOfRecord\":[],\"versionCreatedAt\":\"2022-02-09 16:57:07\",\"video\":\"\",\"vorDoi\":\"\",\"vorDoiUrl\":\"\",\"workflowStages\":[]},\"version\":\"v1\",\"identity\":\"rs-1316212\",\"journalConfig\":\"researchsquare\"},\"__N_SSP\":true},\"page\":\"/article/[identity]/[[...version]]\",\"query\":{\"redirect\":\"/article/rs-1316212\",\"identity\":\"rs-1316212\",\"version\":[\"v1\"]},\"buildId\":\"7rjqhiLT3MXkJMwkYKINL\",\"isFallback\":false,\"isExperimentalCompile\":false,\"dynamicIds\":[84888],\"gssp\":true,\"scriptLoader\":[]}","source_license":"CC-BY-4.0","license_restricted":false}