Association between Human Papillomavirus (HPV) Infection and Neisseria Gonorrhea Among Women Screened for HPV in A Rural Community, Southwest Nigeria: A Case-Control Study

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Abstract Introduction : Persistence and progression of HPV infection, which is a risk factor for cervical cancer, may be influenced by co-infection with sexually transmitted infections (STIs) such as Neisseria gonorrhea. This study aimed to assess the association between HPV infection and gonorrhea among women already screened for HPV in a rural community. Methods : A case-control study was conducted on stored self-sampled vaginal specimens of 186 women who were already screened for HPV in a rural community, Southwest Nigeria. Ninety-three specimens with confirmed HPV infection (cases) and 93 HPV-negative specimens (controls) were purposively selected. These specimens were tested for Neisseria gonorrhea using the PowerGene (R) PCR machine. Available secondary sociodemographic data for these women were retrieved. Data was analyzed using SPSS version 22, with Fisher’s exact test and odds ratio calculated to determine the association at a significance level of p < 0.05. Results : The prevalence of Neisseria gonorrhea among HPV-positive women was 6.45% compared to 1.1% among HPV-negative women. All co-infections were observed in women under 35 years old. The odds of gonorrhea infection were higher among HPV-positive women (OR = 6.33, 95% CI = 0.75–53.56, p = 0.12). Conclusion : The result indicates a potentially meaningful link between HPV and Neisseria gonorrhea infection; HPV-positive women have higher odds of having gonorrhea compared to HPV-negative women, although this was not statistically significant. A larger sample size might be needed to improve accuracy.
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Association between Human Papillomavirus (HPV) Infection and Neisseria Gonorrhea Among Women Screened for HPV in A Rural Community, Southwest Nigeria: A Case-Control Study | 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 Article Association between Human Papillomavirus (HPV) Infection and Neisseria Gonorrhea Among Women Screened for HPV in A Rural Community, Southwest Nigeria: A Case-Control Study Clement Akinfolarin Adepiti, Olumide Emmanuel Adewara, Babatunde Sunday Awoyinka, and 7 more This is a preprint; it has not been peer reviewed by a journal. https://doi.org/ 10.21203/rs.3.rs-8785280/v1 This work is licensed under a CC BY 4.0 License Status: Under Review Version 1 posted 7 You are reading this latest preprint version Abstract Introduction : Persistence and progression of HPV infection, which is a risk factor for cervical cancer, may be influenced by co-infection with sexually transmitted infections (STIs) such as Neisseria gonorrhea. This study aimed to assess the association between HPV infection and gonorrhea among women already screened for HPV in a rural community. Methods : A case-control study was conducted on stored self-sampled vaginal specimens of 186 women who were already screened for HPV in a rural community, Southwest Nigeria. Ninety-three specimens with confirmed HPV infection (cases) and 93 HPV-negative specimens (controls) were purposively selected. These specimens were tested for Neisseria gonorrhea using the PowerGene (R) PCR machine. Available secondary sociodemographic data for these women were retrieved. Data was analyzed using SPSS version 22, with Fisher’s exact test and odds ratio calculated to determine the association at a significance level of p < 0.05. Results : The prevalence of Neisseria gonorrhea among HPV-positive women was 6.45% compared to 1.1% among HPV-negative women. All co-infections were observed in women under 35 years old. The odds of gonorrhea infection were higher among HPV-positive women (OR = 6.33, 95% CI = 0.75–53.56, p = 0.12). Conclusion : The result indicates a potentially meaningful link between HPV and Neisseria gonorrhea infection; HPV-positive women have higher odds of having gonorrhea compared to HPV-negative women, although this was not statistically significant. A larger sample size might be needed to improve accuracy. Human papillomavirus (HPV) gonorrhea co-infection sexually transmitted infection (STI) women’s health Introduction Human papillomavirus infection is the most common sexually transmitted infection globally and a key aetiological agent in the development of cervical cancer [ 1 ]. Co-infection with other STIs, particularly Neisseria gonorrhea, may influence the persistence and progression of HPV infection, thereby modifying the risk of cervical cancer [ 2 , 3 ]. Neisseria gonorrhea remains a disease of significant public health concern, especially in sexually active women, due to its potential to cause reproductive tract complications and to enhance susceptibility to other infections, including HPV [ 4 ]. Emerging evidence suggests that the presence of gonorrhea may alter the natural history of HPV by promoting a pro-inflammatory microenvironment that facilitates viral persistence [ 2 , 4 ]. However, findings from different populations remain inconsistent, and there are limited data from LMICs where STI co-infections are common, and resources for screening are limited. This case-control study aimed to compare the prevalence of gonorrhea in women with and without HPV infection to better understand the potential association between these two STIs. The findings might provide further insight into co-infection patterns that could inform integrated screening and treatment strategies in the cervical cancer prevention programme Materials and Methods This analytical case-control study was conducted on HPV DNA-tested and banked vaginal samples collected earlier during a community-based cervical cancer screening. The women recruited for the primary study were sexually active and aged between 25 and 49 years. A matched sampling method was adopted, with random selection of 93 HPV-positive banked samples from the positive group (cases), and a purposive age matching of 93 HPV-negative banked samples as controls. The lysates of the selected samples were retrieved from the − 80°C freezer and allowed to thaw at room temperature. The prepacked (Screenfire Zebral BioDome R ) reaction wells containing the Neisseria gonorrhea detection reagents were thawed from 4 0 C at room temperature. Following the Zebra BioDome sample loading instruction, 10µl of the negative control and positive control templates were added into the first and second reaction wells, respectively, and a negative control was also added to the last well for every 96 wells to be run on the PowerGene PCR machine. Thereafter, 10µl each of the lysate was added to the remaining 93 reaction wells using a pipette tip per well to prevent cross-contamination. All the tubes were capped and labelled immediately after adding the lysate. The capped tubes were briefly spun to bring down all the liquid to the bottom of the wells. The Zebra BioDome tube strips were then placed into the PowerGene PCR machine, set to the isothermal program mode to run at 60°C for 60 minutes. Runs are valid if the negative and positive controls pass. A fluorescence signal channel was used to detect Neisseria gonorrhea, and a separate signal was used as the internal control channel. A sample was deemed positive for gonorrhea if its signal was detected in the gonorrhea channel within 60 minutes, regardless of the internal control channel signal. If no signal was detected in the gonorrhea channel within 60 minutes, a signal in the internal control channel was required for the sample to be considered a valid negative. If no signal was detected in the gonorrhea channel and the internal control channel, the sample was considered invalid, suggesting inadequate DNA in the reaction. The results of each lysate were recorded, the sociodemographic data of the clients were recalled from the study database, and all were analyzed using SPSS 22. Fisher’s exact test was used to compare the prevalence of gonorrhea between groups. Odds ratios with 95% confidence intervals were calculated. A p-value < 0.05 was considered statistically significant. Institutional ethical approval was obtained for this study. Results The mean age of the HPV-positive arm was 35 years \(\:\pm\:\) 7.2, and this was also like the mean age of the control arm, which was 35years \(\:\pm\:\:6.9\) . All co-infections were observed in women under 35 years of age (Table 1 ). Gonorrhea prevalence was highest in women aged 25-29years (57.1%), followed closely by those 30-34years old, and was zero in women 35years old or more (Table 1 ). Gonorrhea was detected in 6 (6.45%) of the cases and 1 (1.1%) of the controls (Table 2 ). The odds ratio (OR) of gonorrhea among HPV-positive women was 6.33, 95% CI (0.75–53.56), with a p-value of 0.12. Discussion This study examined the prevalence of Neisseria gonorrhoea (NG) infection among women stratified by their HPV status. The targeted recruitment of 93 HPV-positive and 93 HPV-negative women allowed for a comparative evaluation of NG co-infection in these two groups. The findings offer insight into the possible interaction between NG and HPV infections, with implications for cervical precancer progression and public health strategies in low- and middle-income countries (LMICs). The observed presence of NG in both HPV-positive and HPV-negative cohorts aligns with earlier evidence suggesting that sexually transmitted infections (STIs) frequently co-occur due to shared risk factors such as unprotected sex, multiple sexual partners, and limited access to screening and treatment [ 5 , 6 ]. Our results suggest that NG infection is not restricted to women with detectable HPV, highlighting the continued need for comprehensive STI screening across all sexually active populations. Numerous studies have explored the biological plausibility of co-infection influencing HPV persistence and cervical carcinogenesis. One of the suggested mechanisms is that sexually transmitted infections, such as Neisseria gonorrhoea, may exacerbate mucosal inflammation, thereby disrupting the epithelial barrier and impairing local immune responses [ 7 , 8 ]. This in turn can create a microenvironment conducive to HPV acquisition, persistence, and progression [ 2 , 3 , 8 ]. It has also been documented that chronic NG infection could hinder the clearance of high-risk HPV types through neutrophilic inflammation and cytokine dysregulation [ 9 , 10 ]. The higher prevalence of NG in the HPV-positive group, though not statistically significant in this dataset, is biologically plausible and consistent with previous studies [ 11 , 12 ]. These findings support a syndemic model of STI transmission, where overlapping infections contribute synergistically to the burden of disease. Moreover, co-infection with NG has been associated with increased cervical cytological abnormalities and may influence progression to high-grade lesions [ 13 , 14 ]. The prevalence of NG was highest in the younger women in this study, with co-infection only documented in women younger than 35years. This finding conforms to a few community studies in Nigeria that report the highest gonorrhea prevalence among adolescents and young adults, commonly the 15–25years age range [ 15 – 17 ]. This finding is also like what is seen in Europe and America. The European surveillance reports (ECDC Annual Epidemiological Reports) consistently show the highest age-specific notification rates of gonorrhea in young adults, commonly the 20–24 and 25–34 age groups [ 18 ]. The United States CDC surveillance similarly finds concentrations of reported gonorrhea in adolescents and young adults, with large shares of cases among 15–24-year-olds and especially in the 20–24 age band; recent U.S. reports (2022–2024 surveillance summaries) show that nearly half of reported cases occur in persons aged 15–24years [ 19 ]. Generally, younger women are more biologically susceptible to acquisition and sequelae of urogenital STIs. Behavioural factors such as high partner turnover rates, lower consistent condom use, earlier sexual debut in some settings, lower healthcare-seeking behaviours, and lower screening coverage (many infections are asymptomatic) have contributed to this trend. These drivers are common across low-, middle-, and high-income countries and explain why infections cluster in younger women globally [ 15 – 20 ]. From a public health perspective, these results underscore the importance of integrated STI control programs. In LMICs, where both HPV and NG are prevalent, and healthcare resources are limited, screening platforms that incorporate molecular testing for multiple pathogens could enhance detection, treatment, and follow-up. This is particularly possible on the PowerGene machine and other available PCR platforms, which are capable of testing for multiple pathogens using DNA. Opportunistic testing for NG during HPV screening, particularly in high-risk populations, may improve patient outcomes and prevent sequelae such as pelvic inflammatory disease or adverse pregnancy outcomes [ 21 , 22 ]. It is also worth noting that syndromic management of STIs—a common approach in many LMICs—may miss asymptomatic NG infections, especially in women [ 23 , 24 ]. The use of nucleic acid amplification tests (NAATs) and PCR DNA testing could significantly improve detection rates, but cost and infrastructure remain barriers [ 25 , 26 ]. Despite its strengths, including focused recruitment and pathogen-specific testing and the fact that both cases and controls were drawn from the same population, this study is limited by its design, which prevents assessment of infection dynamics or temporality. Additionally, the selection of HPV-positive women as cases and HPV-negative women as controls may introduce bias if participants differ significantly in sexual behaviour, health-seeking patterns, HIV status, or socio-demographic factors. In conclusion, the co-detection of NG among HPV-positive women reinforces the necessity for coordinated STI screening and treatment strategies. Further longitudinal studies are warranted to assess whether NG co-infection promotes HPV persistence or cervical precancer progression. A multidisciplinary approach, combining epidemiology, microbiology, and behavioral sciences, will be crucial in addressing the intertwined burden of STIs in resource-limited settings. Declarations Ethics approval and consent to participate: this study was approved by the Obafemi Awolowo University Teaching Hospital Ethics Committee in accordance with the declaration of Helsinki vide the approval number- ERC/2022/10/06. All clients signed a written consent to participate. Consent for publication: All clients signed written consent to participate in the study. Availability of data and materials: The datasets used and/or analysed during the current study are available from the corresponding author on reasonable request. Competing interests: All authors declare no conflicting interests. Funding: The project was funded by contributions from the authors Authors' contributions: All authors contributed to the study conception and design. All authors performed material preparation, data collection, and analysis. Adepiti C.A wrote the first draft of the manuscript, and all authors commented on previous versions of the manuscript. All authors read and approved the final manuscript. Acknowledgements: We acknowledge the Itoju project, whose Biobanked materials was used for the study. References IARC Working Group on the Evaluation of Carcinogenic Risks to Humans. Human Papillomaviruses. Lyon (FR): International Agency for Research on Cancer. 2007. (IARC Monographs on the Evaluation of Carcinogenic Risks to Humans, No. 90.) 1, Human Papillomavirus (HPV) Infection. Available from: https://www.ncbi.nlm.nih.gov/books/NBK321770/ Paula Almeida Cunha A, Kassandra Pereira Belfort I, Pedro Belfort Mendes F, Rodrigues Bastos Dos Santos G, Henrique de Lima Costa L, de Matos Monteiro P, Lemos Gaspar R, Borges Ferreira M, de Sá Ferreira A, Cristina Moutinho Monteiro S. Castello Branco Vidal F. Human papillomavirus and Its Association with Other Sexually Transmitted Coinfection among Sexually Active Women from the Northeast of Brazil. Interdiscip Perspect Infect Dis. 2020;2020:8838317. 10.1155/2020/8838317 . 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Additional Declarations No competing interests reported. Cite Share Download PDF Status: Under Review Version 1 posted Reviewers agreed at journal 25 Mar, 2026 Reviewers agreed at journal 20 Mar, 2026 Reviewers invited by journal 10 Mar, 2026 Editor invited by journal 15 Feb, 2026 Editor assigned by journal 08 Feb, 2026 Submission checks completed at journal 08 Feb, 2026 First submitted to journal 04 Feb, 2026 You are reading this latest preprint version Research Square lets you share your work early, gain feedback from the community, and start making changes to your manuscript prior to peer review in a journal. As a division of Research Square Company, we’re committed to making research communication faster, fairer, and more useful. We do this by developing innovative software and high quality services for the global research community. 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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-8785280","acceptedTermsAndConditions":true,"allowDirectSubmit":false,"archivedVersions":[],"articleType":"Research Article","associatedPublications":[],"authors":[{"id":605288662,"identity":"1306910e-bc6f-461d-bbfe-bd9eb1742ea5","order_by":0,"name":"Clement Akinfolarin 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papillomavirus infection is the most common sexually transmitted infection globally and a key aetiological agent in the development of cervical cancer [\u003cspan citationid=\"CR1\" class=\"CitationRef\"\u003e1\u003c/span\u003e]. Co-infection with other STIs, particularly Neisseria gonorrhea, may influence the persistence and progression of HPV infection, thereby modifying the risk of cervical cancer [\u003cspan citationid=\"CR2\" class=\"CitationRef\"\u003e2\u003c/span\u003e, \u003cspan citationid=\"CR3\" class=\"CitationRef\"\u003e3\u003c/span\u003e]. Neisseria gonorrhea remains a disease of significant public health concern, especially in sexually active women, due to its potential to cause reproductive tract complications and to enhance susceptibility to other infections, including HPV [\u003cspan citationid=\"CR4\" class=\"CitationRef\"\u003e4\u003c/span\u003e].\u003c/p\u003e \u003cp\u003eEmerging evidence suggests that the presence of gonorrhea may alter the natural history of HPV by promoting a pro-inflammatory microenvironment that facilitates viral persistence [\u003cspan citationid=\"CR2\" class=\"CitationRef\"\u003e2\u003c/span\u003e, \u003cspan citationid=\"CR4\" class=\"CitationRef\"\u003e4\u003c/span\u003e]. However, findings from different populations remain inconsistent, and there are limited data from LMICs where STI co-infections are common, and resources for screening are limited.\u003c/p\u003e \u003cp\u003eThis case-control study aimed to compare the prevalence of gonorrhea in women with and without HPV infection to better understand the potential association between these two STIs. The findings might provide further insight into co-infection patterns that could inform integrated screening and treatment strategies in the cervical cancer prevention programme\u003c/p\u003e"},{"header":"Materials and Methods","content":"\u003cp\u003eThis analytical case-control study was conducted on HPV DNA-tested and banked vaginal samples collected earlier during a community-based cervical cancer screening. The women recruited for the primary study were sexually active and aged between 25 and 49 years. A matched sampling method was adopted, with random selection of 93 HPV-positive banked samples from the positive group (cases), and a purposive age matching of 93 HPV-negative banked samples as controls. The lysates of the selected samples were retrieved from the \u0026minus;\u0026thinsp;80\u0026deg;C freezer and allowed to thaw at room temperature. The prepacked (Screenfire Zebral BioDome\u003csup\u003eR\u003c/sup\u003e) reaction wells containing the Neisseria gonorrhea detection reagents were thawed from 4\u003csup\u003e0\u003c/sup\u003eC at room temperature. Following the Zebra BioDome sample loading instruction, 10\u0026micro;l of the negative control and positive control templates were added into the first and second reaction wells, respectively, and a negative control was also added to the last well for every 96 wells to be run on the PowerGene PCR machine. Thereafter, 10\u0026micro;l each of the lysate was added to the remaining 93 reaction wells using a pipette tip per well to prevent cross-contamination. All the tubes were capped and labelled immediately after adding the lysate. The capped tubes were briefly spun to bring down all the liquid to the bottom of the wells. The Zebra BioDome tube strips were then placed into the PowerGene PCR machine, set to the isothermal program mode to run at 60\u0026deg;C for 60 minutes. Runs are valid if the negative and positive controls pass. A fluorescence signal channel was used to detect Neisseria gonorrhea, and a separate signal was used as the internal control channel. A sample was deemed positive for gonorrhea if its signal was detected in the gonorrhea channel within 60 minutes, regardless of the internal control channel signal. If no signal was detected in the gonorrhea channel within 60 minutes, a signal in the internal control channel was required for the sample to be considered a valid negative. If no signal was detected in the gonorrhea channel and the internal control channel, the sample was considered invalid, suggesting inadequate DNA in the reaction.\u003cdiv class=\"BlockQuote\"\u003e\u003cp\u003eThe results of each lysate were recorded, the sociodemographic data of the clients were recalled from the study database, and all were analyzed using SPSS 22. Fisher\u0026rsquo;s exact test was used to compare the prevalence of gonorrhea between groups. Odds ratios with 95% confidence intervals were calculated. A p-value\u0026thinsp;\u0026lt;\u0026thinsp;0.05 was considered statistically significant. Institutional ethical approval was obtained for this study.\u003c/p\u003e\u003c/div\u003e\u003c/p\u003e"},{"header":"Results","content":"\u003cp\u003eThe mean age of the HPV-positive arm was 35 years \u003cspan class=\"InlineEquation\"\u003e\u003cspan class=\"mathinline\"\u003e\\(\\:\\pm\\:\\)\u003c/span\u003e\u003c/span\u003e 7.2, and this was also like the mean age of the control arm, which was 35years \u003cspan class=\"InlineEquation\"\u003e\u003cspan class=\"mathinline\"\u003e\\(\\:\\pm\\:\\:6.9\\)\u003c/span\u003e\u003c/span\u003e. All co-infections were observed in women under 35 years of age (Table\u0026nbsp;\u003cspan refid=\"Tab1\" class=\"InternalRef\"\u003e1\u003c/span\u003e). Gonorrhea prevalence was highest in women aged 25-29years (57.1%), followed closely by those 30-34years old, and was zero in women 35years old or more (Table\u0026nbsp;\u003cspan refid=\"Tab1\" class=\"InternalRef\"\u003e1\u003c/span\u003e). Gonorrhea was detected in 6 (6.45%) of the cases and 1 (1.1%) of the controls (Table\u0026nbsp;\u003cspan refid=\"Tab2\" class=\"InternalRef\"\u003e2\u003c/span\u003e). The odds ratio (OR) of gonorrhea among HPV-positive women was 6.33, 95% CI (0.75\u0026ndash;53.56), with a p-value of 0.12.\u003c/p\u003e\n\u003cp\u003e\u003cimg 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\" width=\"609\" height=\"603\"\u003e\u003c/p\u003e"},{"header":"Discussion","content":"\u003cp\u003eThis study examined the prevalence of Neisseria gonorrhoea (NG) infection among women stratified by their HPV status. The targeted recruitment of 93 HPV-positive and 93 HPV-negative women allowed for a comparative evaluation of NG co-infection in these two groups. The findings offer insight into the possible interaction between NG and HPV infections, with implications for cervical precancer progression and public health strategies in low- and middle-income countries (LMICs).\u003c/p\u003e \u003cp\u003eThe observed presence of NG in both HPV-positive and HPV-negative cohorts aligns with earlier evidence suggesting that sexually transmitted infections (STIs) frequently co-occur due to shared risk factors such as unprotected sex, multiple sexual partners, and limited access to screening and treatment [\u003cspan citationid=\"CR5\" class=\"CitationRef\"\u003e5\u003c/span\u003e, \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e6\u003c/span\u003e]. Our results suggest that NG infection is not restricted to women with detectable HPV, highlighting the continued need for comprehensive STI screening across all sexually active populations.\u003c/p\u003e \u003cp\u003eNumerous studies have explored the biological plausibility of co-infection influencing HPV persistence and cervical carcinogenesis. One of the suggested mechanisms is that sexually transmitted infections, such as Neisseria gonorrhoea, may exacerbate mucosal inflammation, thereby disrupting the epithelial barrier and impairing local immune responses [\u003cspan citationid=\"CR7\" class=\"CitationRef\"\u003e7\u003c/span\u003e, \u003cspan citationid=\"CR8\" class=\"CitationRef\"\u003e8\u003c/span\u003e]. This in turn can create a microenvironment conducive to HPV acquisition, persistence, and progression [\u003cspan citationid=\"CR2\" class=\"CitationRef\"\u003e2\u003c/span\u003e, \u003cspan citationid=\"CR3\" class=\"CitationRef\"\u003e3\u003c/span\u003e, \u003cspan citationid=\"CR8\" class=\"CitationRef\"\u003e8\u003c/span\u003e]. It has also been documented that chronic NG infection could hinder the clearance of high-risk HPV types through neutrophilic inflammation and cytokine dysregulation [\u003cspan citationid=\"CR9\" class=\"CitationRef\"\u003e9\u003c/span\u003e, \u003cspan citationid=\"CR10\" class=\"CitationRef\"\u003e10\u003c/span\u003e]. The higher prevalence of NG in the HPV-positive group, though not statistically significant in this dataset, is biologically plausible and consistent with previous studies [\u003cspan citationid=\"CR11\" class=\"CitationRef\"\u003e11\u003c/span\u003e, \u003cspan citationid=\"CR12\" class=\"CitationRef\"\u003e12\u003c/span\u003e]. These findings support a syndemic model of STI transmission, where overlapping infections contribute synergistically to the burden of disease. Moreover, co-infection with NG has been associated with increased cervical cytological abnormalities and may influence progression to high-grade lesions [\u003cspan citationid=\"CR13\" class=\"CitationRef\"\u003e13\u003c/span\u003e, \u003cspan citationid=\"CR14\" class=\"CitationRef\"\u003e14\u003c/span\u003e].\u003c/p\u003e \u003cp\u003eThe prevalence of NG was highest in the younger women in this study, with co-infection only documented in women younger than 35years. This finding conforms to a few community studies in Nigeria that report the highest gonorrhea prevalence among adolescents and young adults, commonly the 15\u0026ndash;25years age range [\u003cspan additionalcitationids=\"CR16\" citationid=\"CR15\" class=\"CitationRef\"\u003e15\u003c/span\u003e\u0026ndash;\u003cspan citationid=\"CR17\" class=\"CitationRef\"\u003e17\u003c/span\u003e]. This finding is also like what is seen in Europe and America. The European surveillance reports (ECDC Annual Epidemiological Reports) consistently show the highest age-specific notification rates of gonorrhea in young adults, commonly the 20\u0026ndash;24 and 25\u0026ndash;34 age groups [\u003cspan citationid=\"CR18\" class=\"CitationRef\"\u003e18\u003c/span\u003e]. The United States CDC surveillance similarly finds concentrations of reported gonorrhea in adolescents and young adults, with large shares of cases among 15\u0026ndash;24-year-olds and especially in the 20\u0026ndash;24 age band; recent U.S. reports (2022\u0026ndash;2024 surveillance summaries) show that nearly half of reported cases occur in persons aged 15\u0026ndash;24years [\u003cspan citationid=\"CR19\" class=\"CitationRef\"\u003e19\u003c/span\u003e].\u003c/p\u003e \u003cp\u003eGenerally, younger women are more biologically susceptible to acquisition and sequelae of urogenital STIs. Behavioural factors such as high partner turnover rates, lower consistent condom use, earlier sexual debut in some settings, lower healthcare-seeking behaviours, and lower screening coverage (many infections are asymptomatic) have contributed to this trend. These drivers are common across low-, middle-, and high-income countries and explain why infections cluster in younger women globally [\u003cspan additionalcitationids=\"CR16 CR17 CR18 CR19\" citationid=\"CR15\" class=\"CitationRef\"\u003e15\u003c/span\u003e\u0026ndash;\u003cspan citationid=\"CR20\" class=\"CitationRef\"\u003e20\u003c/span\u003e].\u003c/p\u003e \u003cp\u003eFrom a public health perspective, these results underscore the importance of integrated STI control programs. In LMICs, where both HPV and NG are prevalent, and healthcare resources are limited, screening platforms that incorporate molecular testing for multiple pathogens could enhance detection, treatment, and follow-up. This is particularly possible on the PowerGene machine and other available PCR platforms, which are capable of testing for multiple pathogens using DNA. Opportunistic testing for NG during HPV screening, particularly in high-risk populations, may improve patient outcomes and prevent sequelae such as pelvic inflammatory disease or adverse pregnancy outcomes [\u003cspan citationid=\"CR21\" class=\"CitationRef\"\u003e21\u003c/span\u003e, \u003cspan citationid=\"CR22\" class=\"CitationRef\"\u003e22\u003c/span\u003e].\u003c/p\u003e \u003cp\u003eIt is also worth noting that syndromic management of STIs\u0026mdash;a common approach in many LMICs\u0026mdash;may miss asymptomatic NG infections, especially in women [\u003cspan citationid=\"CR23\" class=\"CitationRef\"\u003e23\u003c/span\u003e, \u003cspan citationid=\"CR24\" class=\"CitationRef\"\u003e24\u003c/span\u003e]. The use of nucleic acid amplification tests (NAATs) and PCR DNA testing could significantly improve detection rates, but cost and infrastructure remain barriers [\u003cspan citationid=\"CR25\" class=\"CitationRef\"\u003e25\u003c/span\u003e, \u003cspan citationid=\"CR26\" class=\"CitationRef\"\u003e26\u003c/span\u003e].\u003c/p\u003e \u003cp\u003eDespite its strengths, including focused recruitment and pathogen-specific testing and the fact that both cases and controls were drawn from the same population, this study is limited by its design, which prevents assessment of infection dynamics or temporality. Additionally, the selection of HPV-positive women as cases and HPV-negative women as controls may introduce bias if participants differ significantly in sexual behaviour, health-seeking patterns, HIV status, or socio-demographic factors.\u003c/p\u003e \u003cp\u003eIn conclusion, the co-detection of NG among HPV-positive women reinforces the necessity for coordinated STI screening and treatment strategies. Further longitudinal studies are warranted to assess whether NG co-infection promotes HPV persistence or cervical precancer progression. A multidisciplinary approach, combining epidemiology, microbiology, and behavioral sciences, will be crucial in addressing the intertwined burden of STIs in resource-limited settings.\u003c/p\u003e"},{"header":"Declarations","content":"\u003cp\u003eEthics approval and consent to participate: this study was approved by the Obafemi Awolowo University Teaching Hospital Ethics Committee in accordance with the declaration of Helsinki vide the approval number- ERC/2022/10/06. All clients signed a written consent to participate.\u003c/p\u003e\n\u003cp\u003eConsent for publication: All clients signed written consent to participate in the study.\u003c/p\u003e\n\u003cp\u003eAvailability of data and materials: The datasets used and/or analysed during the current study are available from the corresponding author on reasonable request.\u003c/p\u003e\n\u003cp\u003eCompeting interests: All authors declare no conflicting interests.\u003c/p\u003e\n\u003cp\u003eFunding: The project was funded by contributions from the authors\u003c/p\u003e\n\u003cp\u003eAuthors\u0026apos; contributions: All authors contributed to the study conception and design. All authors performed material preparation, data collection, and analysis. Adepiti C.A wrote the first draft of the manuscript, and all authors commented on previous versions of the manuscript. All authors read and approved the final manuscript. \u003c/p\u003e\n\u003cp\u003eAcknowledgements: We acknowledge the Itoju project, whose Biobanked materials was used for the study.\u0026nbsp;\u003c/p\u003e"},{"header":"References","content":"\u003col\u003e\u003cli\u003e\u003cspan\u003eIARC Working Group on the Evaluation of Carcinogenic Risks to Humans. Human Papillomaviruses. Lyon (FR): International Agency for Research on Cancer. 2007. (IARC Monographs on the Evaluation of Carcinogenic Risks to Humans, No. 90.) 1, Human Papillomavirus (HPV) Infection. 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Diagnostic Approaches for Sexually Transmitted Infections in Clinical Microbiology: A Comprehensive Review. \u003cem\u003eIJMSDH\u003c/em\u003e, 2024.10, Issue 02, \u003cspan class=\"ExternalRef\"\u003e\u003cspan class=\"RefSource\"\u003ehttps://doi.org/10.55640/ijmsdh-10-02-07\u003c/span\u003e\u003cspan address=\"10.55640/ijmsdh-10-02-07\" targettype=\"DOI\" class=\"RefTarget\"\u003e\u003c/span\u003e\u003c/span\u003e\u003c/span\u003e\u003c/li\u003e \u003cli\u003e\u003cspan\u003eHsieh K, Melendez JH, Gaydos CA, Wang TH. Bridging the gap between development of point-of-care nucleic acid testing and patient care for sexually transmitted infections. Lab Chip. 2022;22(3):476\u0026ndash;511. \u003cspan class=\"ExternalRef\"\u003e\u003cspan class=\"RefSource\"\u003e10.1039/d1lc00665g\u003c/span\u003e\u003cspan address=\"10.1039/d1lc00665g\" targettype=\"DOI\" class=\"RefTarget\"\u003e\u003c/span\u003e\u003c/span\u003e. PMID: 35048928; PMCID: PMC9035340.\u003c/span\u003e\u003c/li\u003e\u003c/ol\u003e"}],"fulltextSource":"","fullText":"","funders":[],"hasAdminPriorityOnWorkflow":false,"hasManuscriptDocX":true,"hasOptedInToPreprint":true,"hasPassedJournalQc":"","hasAnyPriority":false,"hideJournal":false,"highlight":"","institution":"","isAcceptedByJournal":false,"isAuthorSuppliedPdf":false,"isDeskRejected":"","isHiddenFromSearch":false,"isInQc":false,"isInWorkflow":false,"isPdf":false,"isPdfUpToDate":true,"isWithdrawnOrRetracted":false,"journal":{"display":true,"email":"[email protected]","identity":"bmc-womens-health","isNatureJournal":false,"hasQc":true,"allowDirectSubmit":false,"externalIdentity":"bmwh","sideBox":"Learn more about [BMC Women's Health](http://bmcwomenshealth.biomedcentral.com/)","snPcode":"","submissionUrl":"https://www.editorialmanager.com/bmwh/default.aspx","title":"BMC Women's Health","twitterHandle":"","acdcEnabled":true,"dfaEnabled":false,"editorialSystem":"em","reportingPortfolio":"BMC Series","inReviewEnabled":true,"inReviewRevisionsEnabled":true},"keywords":"Human papillomavirus (HPV), gonorrhea, co-infection, sexually transmitted infection (STI), women’s health","lastPublishedDoi":"10.21203/rs.3.rs-8785280/v1","lastPublishedDoiUrl":"https://doi.org/10.21203/rs.3.rs-8785280/v1","license":{"name":"CC BY 4.0","url":"https://creativecommons.org/licenses/by/4.0/"},"manuscriptAbstract":"\u003cp\u003e\u003cstrong\u003eIntroduction\u003c/strong\u003e: Persistence and progression of HPV infection, which is a risk factor for cervical cancer, may be influenced by co-infection with sexually transmitted infections (STIs) such as Neisseria gonorrhea. This study aimed to assess the association between HPV infection and gonorrhea among women already screened for HPV in a rural community.\u003c/p\u003e\n\u003cp\u003e\u003cstrong\u003eMethods\u003c/strong\u003e: A case-control study was conducted on stored self-sampled vaginal specimens of 186 women who were already screened for HPV in a rural community, Southwest Nigeria. Ninety-three specimens with confirmed HPV infection (cases) and 93 HPV-negative specimens (controls) were purposively selected. These specimens were tested for Neisseria gonorrhea using the PowerGene \u003csup\u003e(R)\u003c/sup\u003e PCR machine. Available secondary sociodemographic data for these women were retrieved. Data was analyzed using SPSS version 22, with Fisher’s exact test and odds ratio calculated to determine the association at a significance level of p \u0026lt; 0.05.\u003c/p\u003e\n\u003cp\u003e\u003cstrong\u003eResults\u003c/strong\u003e: The prevalence of Neisseria gonorrhea among HPV-positive women was 6.45% compared to 1.1% among HPV-negative women. All co-infections were observed in women under 35 years old. The odds of gonorrhea infection were higher among HPV-positive women (OR = 6.33, 95% CI = 0.75–53.56, p = 0.12).\u003c/p\u003e\n\u003cp\u003e\u003cstrong\u003eConclusion\u003c/strong\u003e: The result indicates a potentially meaningful link between HPV and Neisseria gonorrhea infection; HPV-positive women have higher odds of having gonorrhea compared to HPV-negative women, although this was not statistically significant. A larger sample size might be needed to improve accuracy.\u003c/p\u003e","manuscriptTitle":"Association between Human Papillomavirus (HPV) Infection and Neisseria Gonorrhea Among Women Screened for HPV in A Rural Community, Southwest Nigeria: A Case-Control Study","msid":"","msnumber":"","nonDraftVersions":[{"code":1,"date":"2026-03-14 01:07:22","doi":"10.21203/rs.3.rs-8785280/v1","editorialEvents":[{"type":"communityComments","content":0},{"type":"reviewerAgreed","content":"222672525146190318978437464807340109352","date":"2026-03-25T12:54:38+00:00","index":"hide","fulltext":""},{"type":"reviewerAgreed","content":"145772919739830290198467061096866056610","date":"2026-03-20T17:22:43+00:00","index":"hide","fulltext":""},{"type":"reviewersInvited","content":"","date":"2026-03-10T15:10:32+00:00","index":"","fulltext":""},{"type":"editorInvited","content":"","date":"2026-02-15T14:32:25+00:00","index":"","fulltext":""},{"type":"editorAssigned","content":"","date":"2026-02-09T03:11:36+00:00","index":"","fulltext":""},{"type":"checksComplete","content":"","date":"2026-02-09T03:10:59+00:00","index":"","fulltext":""},{"type":"submitted","content":"BMC Women's Health","date":"2026-02-04T10:13:26+00:00","index":"","fulltext":""}],"status":"published","journal":{"display":true,"email":"[email protected]","identity":"bmc-womens-health","isNatureJournal":false,"hasQc":true,"allowDirectSubmit":false,"externalIdentity":"bmwh","sideBox":"Learn more about [BMC Women's Health](http://bmcwomenshealth.biomedcentral.com/)","snPcode":"","submissionUrl":"https://www.editorialmanager.com/bmwh/default.aspx","title":"BMC Women's Health","twitterHandle":"","acdcEnabled":true,"dfaEnabled":false,"editorialSystem":"em","reportingPortfolio":"BMC Series","inReviewEnabled":true,"inReviewRevisionsEnabled":true}}],"origin":"","ownerIdentity":"bdd459d3-2dfa-45c3-8e17-66479b490929","owner":[],"postedDate":"March 14th, 2026","published":true,"recentEditorialEvents":[],"rejectedJournal":[],"revision":"","amendment":"","status":"under-review","subjectAreas":[],"tags":[],"updatedAt":"2026-03-14T01:07:22+00:00","versionOfRecord":[],"versionCreatedAt":"2026-03-14 01:07:22","video":"","vorDoi":"","vorDoiUrl":"","workflowStages":[]},"version":"v1","identity":"rs-8785280","journalConfig":"researchsquare"},"__N_SSP":true},"page":"/article/[identity]/[[...version]]","query":{"redirect":"/article/rs-8785280","identity":"rs-8785280","version":["v1"]},"buildId":"XKTyCvWXoU3ODBz1xrDgd","isFallback":false,"isExperimentalCompile":false,"dynamicIds":[84888],"gssp":true,"scriptLoader":[]}

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