Cell-mediated autoimmune responses were studied by means of in vivo and in vitro techniques in five rhesus monkeys with spontaneous endometriosis. The results were compared with similar data obtained from five normal rhesus monkeys without endometriosis. The in vivo studies included intrademal injection of autologous antigens prepared from uterine endometrium, ectopic endometrium, or peritoneum, or injection of the mitogen, phytohemagglutinin (PHA). Skin biopsies were obtained at 48 hours and evaluated under the light microscope for perivascular lymphocytic infiltration. The mean number of lymphocytes per high-power field after injection of the autologous endometrial antigen was significantly smaller in animals affected by endometriosis than in the control group. There was no significant difference in lymphocytic response to autologous peritoneal antigens between the groups. Animals of both groups responded readily to PHA with marked perivascular lymphocytic infiltration. Lymphocyte stimulation responses to the same autologous antigens or to PHA were evaluated by means of in vitro assays and micro-methods. Lymphocyte stimulation response to autologous endometrial antigens in the group with endometriosis was significantly less than in the control group. There was no significant difference in response to the peritoneal antigens between the groups, and the response to PHA was marked in all animals of both groups. The results of this study indicate that rhesus monkeys with spontaneous endometriosis have an altered cellular immune response to autologous antigens. Although the animals were immunologically competent, as judged by responses to PHA, both in vivo and in vitro studies indicated a decrease in the cell-mediated immune response to autologous endometrial antigens. These data suggest that endometrial cells translocated from their normal location may implant only in women with specific alteration in cell-mediated immunity. New light is thus shed on the cause of endometriosis.
PMID 7282821 7282821 DOI 10.1016/0002-9378(81)90598-6 10.1016/0002-9378(81)90598-6
Cite this article
Dmowski, W. P., Steele, R. W., & Baker, G. F. (1981). Deficient cellular immunity in endometriosis. American journal of obstetrics and gynecology, 141(4), 377-383. https://doi.org/10.1016/0002-9378(81)90598-6
Dmowski WP, Steele RW, Baker GF. Deficient cellular immunity in endometriosis. Am J Obstet Gynecol. 1981;141(4):377-383. doi:10.1016/0002-9378(81)90598-6
Dmowski, W. P., et al. "Deficient cellular immunity in endometriosis." American journal of obstetrics and gynecology, vol. 141, no. 4, 1981, pp. 377-383.
Endometriosis is an estrogen-dependent condition that affects 5 million American women; however, its etiology is not fully understood. The development of the baboon model of endometriosis provides an extremely powerful tool to investigate the development and progression of endometriosis from the early invasive phase to the advanced established disease. The inflammatory reaction that occurs in the peritoneal cavity at the site of endometriotic lesions does not clear the refluxed endometrial fragments. Moreover, this reaction appears to promote the survival of the tissue and the development of the disease. Exploration of the interactions between peritoneal macrophages and cytotoxic T cells and endometrial cells will determine whether their ability to scavenge and induce apoptosis is altered. Determining the mechanism(s) that induces the expression of estrogen and its receptor (ERbeta) is crucial to our understanding of the progression of the disease. The effects of ERbeta activation in endometriotic lesions should be investigated. It is important to determine the effects of estrogen on the function of the immune cells, either directly or indirectly. Finally, determining the effect of events at sites of ectopic endometrium on the eutopic endometrium may elucidate the mechanism(s) of infertility associated with endometriosis.
The role of natural killer (NK) cells in the decreased cellular immunity of women with endometriosis was investigated. DESIGN, SETTING, Thirty-four women were investigated prospectively before a CO2-laser laparoscopy for infertility and/or pain at the University Hospital Gasthuisberg. Endometriosis was scored blindly. The cytotoxicity, directed against the endometrium, was mediated by NK cells because this cytotoxicity could be removed by treating the effector cells with the NK-specific anti-Leu-11b monoclonal antibody. Consequently, we evaluated prospectively in those women the lymphocyte-mediated cytotoxicity toward NK sensitive (K562-assay) and autologous endometrial target cells. The NK activity (K562-assay) and the cytotoxicity against autologous endometrial cells were similarly decreased in women with endometriosis and correlated with the severity of the disease. Using heterologous effector cells, the decreased chromium release in women with endometriosis was less pronounced but still present. The decreased cytotoxicity to endometrial cells in women with endometriosis is mainly because of a defect in NK activity but is also partially because of a resistance of the endometrium to NK cytotoxicity.
EndometriosisAMH and Ovarian ReserveSurgical Staging and TypologyAnti-Müllerian Hormone
Endometriosis is a chronic, gynecologic condition in which tissue similar to the lining of the uterus implants throughout the body. Women with endometriosis have a higher prevalence of infertility and a greater risk of early natural menopause compared to those without endometriosis. This study aimed to evaluate preoperative serum AMH levels among women with and without incident endometriosis and to assess whether levels differ by surgical staging and typology. The ENDO (Endometriosis: Natural History, Diagnosis, and Outcomes) study was conducted between 2007 and 2009. The ENDO study consisted of an operative and population cohort (n=600). Only those in the ENDO operative cohort from the Utah site were used for this analysis, and included women aged 18 to 44 years who were scheduled for gynecologic surgery, irrespective of clinical indication (n=476). AMH levels were measured from stored serum collected before surgery using a quantitative enzyme-linked immunosorbent assay. After excluding participants with missing outcome data (n=51), unilateral oophorectomy (n=8), or those within the population cohort (n=69), 348 participants remained for the analysis. Surgically confirmed endometriosis diagnosis, staging (American Society for Reproductive Medicine I-IV), and typology (superficial, deep, ovarian) were ascertained by the operative report. Outliers for AMH (>14.0 ng/mL) were excluded from the analyses and AMH values were log-transformed. Multivariable linear regression models adjusted for age (squared and continuous), body mass index, serum cotinine levels, and exogenous hormonal contraceptive use were conducted. Percentage differences in AMH were calculated as (exp[β]-1)×100, and 95% confidence intervals were reported. Compared with no endometriosis, incident endometriosis diagnosis was associated with lower AMH levels (-19.8%; 95% confidence interval, -37.0 to 1.0); however, this association was not statistically significant. Stage III to IV disease was associated with 40.1% lower AMH levels (95% confidence interval, -58.9 to -12.7). Ovarian endometriomas were most strongly associated with lower AMH levels (-54.3%; 95% confidence interval, -69.4 to -31.8), with a more pronounced association among those with infertility (-72.6%; 95% confidence interval, -85.4 to -48.5). Deep (-24.1%; 95% confidence interval, -48.2 to 11.0) and superficial (-15.5%; 95% confidence interval, -34.6 to 9.3) endometriosis also showed a trend toward lower AMH levels, but these findings were not statistically significant. Compared with a postoperative diagnosis of a normal pelvis, incident endometriosis was associated with 26.8% lower AMH levels (95% confidence interval, -44.6 to -3.4). Stage III to IV disease was associated with 47.8% lower AMH levels (95% confidence interval, -65.8 to -23.2), and all subtypes of endometriosis were statistically significantly associated with lower levels of AMH compared with a postoperative diagnosis of a normal pelvis (ovarian: -60.8%; 95% confidence interval, -74.4 to -39.9; -34.3%; 95% confidence interval, -56.2 to -1.4; -24.8%; 95% confidence interval, -43.9 to -0.8). Ovarian and moderate to severe (stage III-IV) endometriosis were associated with markedly lower AMH levels compared with no endometriosis. Compared with a postoperative diagnosis of a normal pelvis, incident endometriosis and moderate to severe stages (stage III-IV) were associated with statistically significantly lower AMH levels. Additionally, typology (deep, ovarian, or superficial) was associated with statistically significantly lower AMH levels. However, this association was likely driven by the presence of ovarian endometriomas across all subtypes. These findings are consistent with previous studies and demonstrate that endometriosis lesions themselves, independent of surgical intervention, influence AMH levels.
General OB/GYNUterine Closure TechniqueHysterotomy RepairCesarean Scar Complications
Bujold E et al., 2026·American Journal of Obstetrics and Gynecology
Normal uterine function depends on cyclical regeneration and the capacity to sustain pregnancy. A cesarean incision represents an injury to this remarkable organ. Although the uterus possesses exceptional healing potential, cesarean delivery increases the risk of secondary infertility, pelvic pain, uterine rupture, and abnormal placentation in subsequent pregnancies. The two most important determinants of successful hysterotomy healing after cesarean delivery are the location of the incision and the surgical technique used for closure. The anatomic site of entry-whether the corpus, lower uterine segment, or cervix-defines the tissue composition, vascularity, and contractility at the wound margins, which in turn influence how the scar remodels and withstands subsequent pregnancies. Surgical technique is also important. A robust body of experimental and clinical evidence demonstrates that restoring anatomic integrity by reapproximating uterine layers while excluding the endometrium produces stronger scars and reduces late complications. The rationale for excluding the endometrium is to prevent displacement of endometrial tissue into the myometrium and to avoid mucosal tearing against a foreign body (i.e. suture material), both of which predispose to defective healing. When the endometrium is incorporated, healing is often impaired, leading to niches or isthmoceles, adenomyosis, and endometriosis at the scar site. Over time, these defects have been recognized as contributors to abnormal bleeding, pelvic pain, infertility, uterine rupture, and placenta accreta spectrum disorders. Despite this evidence, single-layer closures that incorporate endometrium became widely adopted because of their speed and simplicity, while their long-term sequels were initially underappreciated. This has prompted renewed scrutiny of closure techniques, including comparisons of single-layer vs double-layer closure, locking vs nonlocking sutures, type of sutures, and the direction of suture. Collectively, the data show that optimal closure respects uterine anatomy, restores the natural alignment of tissues, and achieves hemostasis without compromising perfusion or strangulating tissues. Building on these principles, we herein describe a refined 3-layer closure. The first layer approximates decidua and junctional myometrium while excluding surface endometrium to prevent tissue entrapment and bacterial contamination. The second layer restores anatomic wall integrity by reapproximating the bulk of the myometrium, thereby reinforcing strength and distributing tension across the scar. The third layer reapproximates superficial myometrium and serosa, smoothing the uterine surface and reducing adhesions. This technique is not simply a return to traditional double-layer methods or an extension of single-layer practice, but rather a refinement that integrates lessons from visceral surgery and contemporary obstetric data. Its rationale is to restore anatomy, secure hemostasis without ischemia, and preserve long-term uterine function. While short-term safety appears comparable across closure methods, evidence increasingly indicates that long-term reproductive outcomes depend on how closure respects tissue biology. We argue that appropriate repair is more meticulous restoration of uterine anatomy should take precedence over operative speed. The enduring success of a hysterotomy repair depends on the surgical technique employed, as it directly affects women's future reproductive health.