Section 2
The study was designed in compliance with the STROBE checklist [ 10 ]. Data and intraoperative videos of patients with endosalpingiosis undergoing a laparoscopy between 2007 and 2020 in the Department of Obstetrics and Gynecology of Cantonal Hospital Schaffhausen were examined. Exclusion criteria were a lack of histologically verified endosalpingiosis and missing or insufficient intraoperative video material. Every included video was reviewed by two reviewers independently (AM, NS). In cases of disagreement between the two reviewers, a third reviewer (LB) was invited to participate, and the consensus was reached by discussion.
The minimum required sample size was calculated based on the study by Hesseling et al. [ 2 ], presumably the most comprehensive description of intraoperative findings in endosalpingiosis to date, versus a review of the current literature data. According to these data, lesions of 1 to 10 mm in diameter seem most frequent in clinical routine. This is in line with our experience and in contrast to the literature, where mostly larger findings of 4–5 cm have been reported. Regarding the anatomical distribution, in the study by Hesseling et al., the majority of lesions were in the pouch of Douglas with 69%, whereas only 7% were seen there in the literature review. In consideration of these findings, assuming a statistical power of 80% ( p = 0.05), at least 18 participants in each group were required to describe the macroscopic phenotype, or eight for the anatomic distribution.
This systematic review was conducted according to the PRISMA Guidelines [ 11 ]. The study protocol was registered in PROSPERO (CRD42022303171). The search for eligible studies was conducted in two databases (PubMed, Medline, and Embase) using a combination of the following MeSH terms as an electronic search algorithm: Endosalpingiosis OR Mullerianosis OR Endometriosis after salpingectomy. Reference lists of relevant articles and associated reviews were manually searched to identify papers not captured in the electronic search. Original studies (cohort studies, case-control studies, case reports) concerning humans in any language were considered for inclusion. Studies were included if their focus was on endosalpingiosis and if they contained information about the macroscopic appearance and/or the anatomical distribution. Exclusion criteria were an insufficiently precise description of the appearance (in words or pictures), missing anatomical information, or a lack of histological confirmation.
If the same cases were included in more than one publication (e.g., abstract and full-text manuscript), only the publication with the most detailed information was considered. Abstracts providing information about the macroscopic presentation and anatomical distribution of endosalpingiosis were considered eligible if no full-text manuscript was available.
The main search was conducted independently by three investigators (LB, DRK, NS) for the relevant literature published until 31 December 2021. Discrepancies were resolved by consensus. In addition to information on the general characteristics of the studies (authors, year of publication, journal, design, number of patients), the following parameters were recorded in standardized Excel spreadsheets.
In both the own population and the systematic review population, the clinicopathological characteristics of the patients (e.g., age, parity, menopausal status, previous abdominal or gynecological surgery, indication for surgery, concurrent endometriosis and/or cancer) were recorded.
The primary endpoint was the macroscopic phenotype of endosalpingiosis lesions; the secondary endpoint was the anatomical localization.
The appearance of the lesions from patients was described in terms of the shape, color, height, surface area, consistency, associated calcifications/adhesions/fibrosis, and histological presence of endometriosis in the same lesions. On this basis, lesions were allocated into five main visual patterns (types 1–5: vesicular, polypous, fimbrial-like, cystic, and unusual). This classification has been described previously by our group ( Figure 1 ) [ 12 ].
Statistical analyses were performed with IBM SPSS Statistics 27 (Endicott, NY, USA). For the categorical data, the Chi-square test was used; for continuous data, the Mann–Whitney U test was used. p -values < 0.05 were considered statistically significant.
Quality assessments for the included studies were conducted independently by three reviewers (LB, DRK, NS). Quality assessment for the observational cohort studies was performed using the Newcastle–Ottawa Scale and, for case reports, the JBI critical appraisal checklist for case reports [ 13 , 14 ].
Apart from the retrospectively recorded, anonymized laparoscopic images and clinicopathological data of patients of the own population, there was no patient or public involvement in this study. Patient consent was obtained for the anonymous re-use of the data and intraoperative images. Approval for research was obtained from the local ethics committee (2020-02718). There are no conflicts of interest to declare.
Results
In our study group, we found 77 patients with histologically verified endosalpingiosis. The mean age was 40.2 years (SD 16.4), and the mean BMI was 24.1 kg/m 2 (SD 5.7). Most (75.3%, n = 58) patients where premenopausal. Most (59.7% n = 46) were nulligravida and (70.1%, n = 54) nullipara. Of the 23 women who gave birth, 30.4% (n = 7) had at least one cesarean section. Close to half (46.7% n = 36) did not have any previous abdominal or vaginal surgery; 29.9% (n = 23) were smokers; 59.7% (n = 46) did not take any kind of hormonal treatment at the time of surgery; 13% (n = 10) were on combined oral contraceptives, 15.6% (n = 12) on the progestogen-only pill or had a levonorgestrel intrauterine device, 3.9% (n = 3) had GnRH-analogues, 1.3% (n = 1) ulipristal acetate, 1.3% (n = 1) bromocriptine, and 2.6% (n = 2) had a hormonal replacement treatment.
Endometriosis was simultaneously present in 53.2% (n = 41) of all cases. According to the American Society for Reproductive Medicine (ASRM) endometriosis classification, 46.3% (n = 19) were at stage I, 14.6% (n = 6) at stage II, 9.8% (n = 4) at stage III, and 29.3% (n = 12) at stage IV. Gynecological malignancies were associated in 28.6% (n = 22); among them, there were seven cases of endometrial cancer, one case of uterine carcinosarcoma, eight cases of borderline ovarian tumors, five cases of epithelial ovarian cancer, and one case of yolk sac tumor of the ovary ( Table 1 ).
Reasons for surgery were in most cases pelvic pain (29.9%, n = 23), surgery for gynecologic malignancies (27.3%, n = 21), infertility (20.8%, n = 16), and suspicious pelvic mass (15.6%, n = 12). All indications are shown in Table 2 . Of the 77 patients, 6.5% (n = 5) underwent colorectal surgery (one rectal segmental resection, four shaving of the rectal muscularis).
Most (64.9%, n = 50) of the cases could be adequately visualized. Five cases were excluded because laparotomy was performed without video documentation, seven cases because no video was archived, and three cases were due to poor video quality. In seven patients, endosalpingiosis could not be distinguished on the peritoneum or from other adjacent lesions (i.e., endometriosis). Endosalpingiosis was not visible due to its sole location in the lymph nodes (three cases) or omentum (two cases).
The mean single-lesion size was 3.6 mm (range 1–40 mm, SD 5.7 mm). The main colors were transparent (48%, n = 24) and white (22%, n = 11). Most lesions had a regular shape (64%, n = 32), were flat (70%, n = 35), had a smooth surface (84%, n = 42), and had a soft or liquid consistency (88%, n = 44). Calcifications were present in 24% (n = 12), and adhesion in 32% (n = 16). The main visual group was vesicular type (62%, n = 31), followed by fimbrial-like (12%, n = 6), cystic (10%, n = 5), and polypous (6%, n = 3) ( Table 3 ). In three cases, there was a second lesion of endosalpingiosis. Among them, two were vesicular and one of type 5 (unusual). Figure 2 provides a schematic intraoperative view of the findings.
Adequate information on anatomic distribution was available in all 77 cases. Twenty-six percent (n = 20) were multicentric, meaning that they were found in more than one localization. Most (89.6%, n = 69) were located in the pelvis, 14.3% (n = 11) in the remaining abdominal cavity, and 3.9% (n = 3) in the lymph nodes. The most frequent localization was the sacrouterine ligaments (24.7%, n = 19), followed by the peritoneum of Douglas (20.8%, n = 16), and of the bladder (19.5%, n = 15) ( Table 4 ).
Two hundred and ten publications were included, with a total of 1174 patients. Among them, 77.1% (n = 162) were case reports or case series with less than five cases, and 22.9% (n = 48) of publications were original human research. Less than half (42.8%, n = 90) of the articles had information about the visual aspect of endosalpingiosis and anatomical distribution, and 20.5% (n = 43) of the studies included a picture of the macroscopic appearance [ 2 , 15 , 16 , 17 , 18 , 19 , 20 , 21 , 22 , 23 , 24 , 25 , 26 , 27 , 28 , 29 , 30 , 31 , 32 , 33 , 34 , 35 , 36 , 37 , 38 , 39 , 40 , 41 , 42 , 43 , 44 , 45 , 46 , 47 , 48 , 49 , 50 , 51 , 52 , 53 , 54 , 55 , 56 , 57 , 58 , 59 , 60 , 61 , 62 , 63 , 64 , 65 , 66 , 67 , 68 , 69 , 70 , 71 , 72 , 73 , 74 , 75 , 76 , 77 , 78 , 79 , 80 , 81 , 82 , 83 , 84 , 85 , 86 , 87 , 88 , 89 , 90 , 91 , 92 , 93 , 94 , 95 , 96 , 97 , 98 , 99 , 100 , 101 , 102 , 103 ] ( Figure 3 ). Most (81.4%, n = 171) included a histological picture, 8.1% (n = 17) an ultrasound image, 11.0% (n = 23) a CT-scan, and 11.4% (n = 24) an MRI image. More than half (57.1%, n = 120) of the studies included only information on the anatomical distribution and no depiction of the phenotype [ 1 , 8 , 104 , 105 , 106 , 107 , 108 , 109 , 110 , 111 , 112 , 113 , 114 , 115 , 116 , 117 , 118 , 119 , 120 , 121 , 122 , 123 , 124 , 125 , 126 , 127 , 128 , 129 , 130 , 131 , 132 , 133 , 134 , 135 , 136 , 137 , 138 , 139 , 140 , 141 , 142 , 143 , 144 , 145 , 146 , 147 , 148 , 149 , 150 , 151 , 152 , 153 , 154 , 155 , 156 , 157 , 158 , 159 , 160 , 161 , 162 , 163 , 164 , 165 , 166 , 167 , 168 , 169 , 170 , 171 , 172 , 173 , 174 , 175 , 176 , 177 , 178 , 179 , 180 , 181 , 182 , 183 , 184 , 185 , 186 , 187 , 188 , 189 , 190 , 191 , 192 , 193 , 194 , 195 , 196 , 197 , 198 , 199 , 200 , 201 , 202 , 203 , 204 , 205 , 206 , 207 , 208 , 209 , 210 , 211 , 212 , 213 , 214 , 215 , 216 , 217 , 218 , 219 , 220 , 221 ]. All of the studies with information on the phenotype also indicated the anatomical distribution.
The mean age of the patients was 45.7 years (SD 14.4). We found information about menopausal status in a total of 88 patients. Most (65.9%, n = 58) were premenopausal. Data about parity was available for 50 patients. Twenty-two percent (n = 11) were nulliparous, 20% (n = 10) primiparous, and 58% (n = 29) had more than one child.
Of the 1174 included patients, only 9.4% (n = 110) had a malignancy. Among them, 19.1% (n = 21) was ovarian neoplasm, 30.9% (n = 34) was uterine cancer, 17.3% (n = 19) was breast neoplasm, 6.4% (n = 7) was cervical neoplasm, 2.7% (n = 3) was intestinal neoplasm, and 15.5% (n = 17) was others. There were no reported vaginal or vulvar cancer in the included studies. Ovarian neoplasm included borderline tumors and ovarian cancer. Breast neoplasm included ductal carcinoma in situ and breast cancer. There was no information about the exact entity in the remaining 8.1% (n = 9) ( Table 1 ).
Data on the indication for the surgery was available in 295 patients. These were mainly: 28.8% (n = 85) suspicious pelvic mass, 21.4% (n = 63) acute or chronic pelvic pain, 15.6% (n = 46) gynecologic neoplasm, and 7.1% (n = 21) fertility diagnostic. All indications are shown in Table 2 . Of the 295 patients where indication for surgery and procedure were known, 3.7% (n = 11) received colorectal surgery (seven rectosigmoid resections, one right hemicolectomy, one ileocecal resection, one other colonic segmental resection, one small bowel segmental resection).
In 99 patients in 90 different studies, enough data were present to evaluate the macroscopic appearance. The mean size was 48.5 mm (range 2–250 mm). Most of the lesions were irregular in shape (63.6%, n = 63), transparent (31.3%, n = 31), or dark in color (25.3%, n = 25), cystic (76.8%, n = 76) with a smooth surface (88.9%, n = 88), and liquid consistency (67.7%, n = 67). The main visual group was the cystic type (49.5%, n = 49), followed by unusual (30.3%, n = 30), polypous (11.1%, n = 11), vesicular (8.1%, n = 8), and finally fimbrial-like (1%, n = 1) ( Table 3 ). In four cases, there was a second type of phenotype. Three of them additionally had a type 4 (cystic), and one a type 5 (unusual) lesion.
In 210 publications with a total of 1174 patients, there was information about the lesion localization of the endosalpingiosis lesion. In 90.6% (n = 1064) of the cases, the lesion was localized only on one site, affecting not more than one organ (unilocular); 4.9% (n = 57) were multilocular; and 4.5% (n = 53) were diagnosed on abdominal washing cytology and could not be assigned to the above two groups. The most frequent localization was the ovaries (23.2%, n = 272), the fallopian tubes (20.4%, n = 239), and the lymph nodes (18.5%, n = 217). Table 4 shows all the different localizations of the lesion.
When comparing the own with the literature population, there were significant differences in the macroscopic aspect between our collective and the reported cases in terms of size ( p < 0.001), shape ( p = 0.001), color ( p = 0.005), height ( p < 0.001), consistency ( p = 0.007), adhesions ( p = 0.002), and in the main visual groups ( p < 0.001) ( Table 3 ).
Furthermore, there were significant differences in the anatomical distribution. We found more lesions on the peritoneum of the bladder ( p < 0.001), the parametrium ( p < 0.001), the sacrouterine ligaments ( p < 0.001), the pelvic sidewall ( p < 0.001), the cavity of Douglas ( p < 0.001), and the abdominal wall ( p = 0.047). In contrast, the cases reported in the literature were more likely to be localized in the ovary ( p < 0.001), fallopian tube ( p < 0.001), and lymph nodes ( p < 0.001) ( Table 4 ). There was no significant difference in the percentage of colorectal procedures between the two populations ( p = 0.287).
Discussion
This study shows the relevant differences between the own population, reflecting clinical practice at a gynecological reference center, and the systematic literature population.
In both populations, the main indications for surgery were pelvic pain, gynecological neoplasm, infertility, and pelvic mass. Significantly more frequent in the own population was fertility diagnostic and surgery for neoplasms; in the literature group, it was pelvic mass. That fertility work-up is a common indication for surgery in patients with findings of endosalpingiosis is consistent with Prentice et al. (27.6% (n = 16/58) vs. 27.1% (16/59) in premenopausal patients) [ 1 ]. That pelvic mass was more common as an indication in the literature population is most likely due to the large manifestations seen in preoperative imaging [ 73 , 81 , 213 ]. The indications seem heterogeneous, which strengthens the currently accepted thesis that endosalpingiosis is mostly an incidental finding and does not cause pain or infertility [ 1 ].
This study’s clinically most relevant finding lies in the macroscopically different lesions ( Table 3 ). Based on nine phenotypic features described in the Materials and Methods, the lesions were subdivided into five visual patterns, which have been published elsewhere [ 12 ]: Type 1 lesions (vesicular) are mostly smaller than 5 mm, symmetric with a translucent clear or yellow liquid content; Type 2 (polypous) are around 5 mm to 10 mm in size, with a smooth surface and reddish color with the closest resemblance to endometriosis; Type 3 (fimbrial-like) looks like fimbrial mucosa with a smooth opaque surface and appears as grouped bumps, frequently on fallopian tubes; Type 4 (cystic) are usually bigger than 10 mm, forming a cystic sac and can be found as pedunculated structures attached to pelvic organs. Type 5 includes all other lesions. The average size of a single lesion in the study population was less than 4 mm (mostly vesicular (Type 1), 62%), whereas in the literature population, it was almost 5 cm (mostly cystic (Type 4), 49.5%) ( Table 3 , Figure 1 ). This difference most likely resulted from publication bias. Most (77.1%) of the articles containing information on the intraoperative aspect of endosalpingiosis are case reports, where impressive examples are interesting [ 66 , 68 ]. This underlines that knowledge on the part of the laparoscopist is important to even recognize this entity intraoperatively.
To date, the origin of endosalpingiosis is not clear. Similar hypotheses of development (retrograde menstruation, metaplasia of the coelomic epithelium, iatrogenic, metastatic, embryonic remnant) are proposed as for endometriosis. Reactive excessive tubal proliferation following salpingitis is another theory [ 4 , 222 ]. Additionally, the natural history of endosalpingiosis and the course of changes over the lifespan are completely unclear.
The term “florid” endosalpingiosis is frequently used in the literature, representing large cystic findings. A recognized definition is missing, so it is unclear whether the term “florid” correlates with biological behavior [ 51 , 68 , 74 , 78 , 87 , 200 ].
How and even whether to approach endosalpingiosis lesions surgically has not been determined. We used near-contact laparoscopy with high resolution. All macroscopically detected foci were removed by local peritoneal excision. Due to the unclear significance and for histological workup with differentiation from other entities, especially endometriosis, until now, we have deliberately decided to avoid ablative procedures.
Although the distinction from endometriosis can often only be made histologically, some features can help to differentiate these entities intraoperatively. According to our experience and published hypothesis, endosalpingiosis lesions seem to have a more symmetrical, clearly circumscribed shape, sometimes surrounded by fine adhesions (32%) and calcifications (24%). Endosalpingiosis seems rarely associated with inflammation (neoangiogenesis, fibrosis). Additionally, we did not encounter any distortion of the anatomy in our cases, as is common in deep endometriosis [ 12 ].
The calcifications look like grains of sand and are associated with psammoma bodies, which are dystrophic calcification following cellular degeneration [ 223 ]. These are in ovarian serous papillary neoplasms and non-neoplastic peritoneal diseases such as endosalpingiosis [ 224 ].
Another differential diagnosis to be considered is peritoneal mesothelioma. This presents from smaller peritoneal lesions of 2 to 20 mm to larger cystic findings. On immunohistological examination, these lesions can be distinguished from endosalpingiosis [ 160 , 225 , 226 ].
Concerning localization, 90% of lesions in our own population were located in the pelvis, most commonly on the sacrouterine ligaments, bladder, or the remaining cavity of Douglas. In the literature, more lesions were on the ovaries or fallopian tubes and as incidental findings of lymphadenectomies. Hesseling et al. found the most common lesions in the cavity of Douglas, followed by the cardinal ligaments [ 2 ].
In the literature population, the prevalence of malignancy in patients with endosalpingiosis was significantly lower than in the own population, which showed similar frequencies to the epidemiologic studies by Hermens et al. and Esselen et al. [ 5 , 7 , 227 ]. It is possible that large cystic forms are less frequently associated with malignancy. It is still unclear whether endosalpingiosis is an insignificant incidental finding or represents a relevant risk factor or even a precursor lesion [ 154 ]. As recently published research has shown, there is increasing evidence that most low-grade serous tumors in the ovary are related to endosalpingiosis [ 228 ].
The limitations of this study—concerning the own population—were the retrospective monocentric design, the limited study population, and that we could not guarantee that all manifestations were seen. To detect as many lesions as possible, we adopted the concept of near-contact laparoscopy [ 229 ]. Concerning the retrospective design and limited population, it can be said that endosalpingiosis is still usually an incidental finding, so there is no preoperative inclusion in an endosalpingiosis cohort. In addition, biopsy and optimal imaging are required for this type of study. Nevertheless, a sample size calculation was performed to have enough power for the research question. Regarding the systematic review, a relevant proportion of the literature consisted of case reports; there were hardly any similar works to compare.
This work raises questions that could be addressed in the future: Do different types of endosalpingiosis actually exist, and is this reflected at the histopathologic level? Is there a different neoplastic potential?