The role of regulatory T-cells in the development of endometriosis
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⤵ 12 in-corpus citations
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This paper reviews the current understanding of regulatory T-cell dysfunction in endometriosis, highlighting their potential role in promoting inflammation and disease development.
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Abstract
Endometriosis is a benign disease of the female reproductive tract, characterized by the process of chronic inflammation and alterations in immune response. It is estimated to affect 2-19% of women in the general population and is commonly associated with symptoms of chronic pelvic pain and infertility. Regulatory T cells (Treg) are a subpopulation of T lymphocytes that are potent suppressors of inflammatory immune response, essential in preventing destructive immunity in all tissues. In endometriosis, several studies have investigated the possible role of Treg cells in the development of the disease. Most studies to date are heterogeneous in methodology and are based on a small number of cases, which means that it is impossible to define their exact role at present. Based on current knowledge, it seems that disturbed Treg homeostasis, leading to increased systemic and local inflammation within ectopic and eutopic endometrium, is present in women who eventually develop endometriosis. It is also evident that different subsets of human Treg cells have different roles in suppressing the immune response. Recent studies in patients with endometriosis have investigated naive/resting FOXP3lowCD45RA+ Treg cells, which upon T cell receptor stimulation, differentiate into activated/effector FOXP3highCD45RA- Treg cells, characterized by a strong immunosuppressive activity. In addition, critical factors controlling expression of Treg/effector genes, including reactive oxygen species and heme-responsive master transcription factor BACH2, were found to be upregulated in endometriotic lesions. As shown recently for cancer microenvironments, microbial inflammation may also contribute to the local composition of FOXP3+ subpopulations in endometriotic lesions. Furthermore, cytokines, such as IL-7, which control the homeostasis of Treg subsets through the tyrosine phosphorylation STAT5 signalling pathway, have also been shown to be dysregulated. To better understand the role of Treg in the development of endometriosis, future studies should use clear definitions of Tregs along with specific characterization of the non-Treg (FOXP3lowCD45RA-) fraction, which itself is a mixture of follicular Tregs and cells producing inflammatory cytokines.
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References (75)
- A conditional mouse model for human MUC1-positive endometriosis shows the presence of anti-MUC1 antibodies and Foxp3+ regulatory T cells via openalex
- Alteration of systemic and uterine endometrial immune populations in patients with endometriosis via openalex
- Association between FOXP3+ regulatory T-cells and occurrence of peritoneal lesions in women with ovarian endometrioma and dermoid cysts via openalex
- BCL6, a key oncogene, in the placenta, pre-eclampsia and endometriosis via openalex
- Cancer-Associated Mutations in Endometriosis without Cancer via openalex
- Cancer driver mutations in endometriosis: Variations on the major theme of fibrogenesis via openalex
- Circulating and Endometrial Regulatory T Cell and Related Populations in Endometriosis and Infertility: Endometriosis Is Associated with Blunting of Endometrial Cyclical Effects and Reduced Proportions in Moderate-Severe Disease via openalex
- Clonal Expansion and Diversification of Cancer-Associated Mutations in Endometriosis and Normal Endometrium via openalex
- Complement Pathway Is Frequently Altered in Endometriosis and Endometriosis-Associated Ovarian Cancer via openalex
- Concomitant autoimmunity may be a predictor of more severe stages of endometriosis via openalex
- Decrease in activated regulatory T cell populations in the endometrium during ovulation in endometriosis via openalex
- Deep Infiltrating Endometriosis and Activation and Memory Surface Markers and Cytokine Expression in Isolated Treg Cells via openalex
- Differential Levels of Regulatory T Cells and T-Helper-17 Cells in Women With Early and Advanced Endometriosis via openalex
- Effects of endometriosis on immunity and mucosal microbial community dynamics in female olive baboons via openalex
- Endometriosis and autoimmunity: Can autoantibodies be used as a non-invasive early diagnostic tool? via openalex
- EPIDEMIOLOGY OF ENDOMETRIOSIS via openalex
- Exacerbation of Endometriosis Due To Regulatory T-Cell Dysfunction via openalex
- Iatrogenic endometriosis harbors somatic cancer-driver mutations via openalex
- Identification and Analyzation of Differentially Expressed Transcription Factors in Endometriosis via openalex
- Identification and Validation of the Signatures of Infiltrating Immune Cells in the Eutopic Endometrium Endometria of Women With Endometriosis via openalex
- IL-10 is not anti-fibrotic but pro-fibrotic in endometriosis: IL-10 treatment of endometriotic stromal cells in vitro promotes myofibroblast proliferation and collagen type I protein expression via openalex
- Induction of endometriosis alters the peripheral and endometrial regulatory T cell population in the non-human primate via openalex
- Interleukin-15 and Interleukin-7 are the Major Cytokines to Maintain Endometriosis via openalex
- Prevalence of deep and ovarian endometriosis in women attending a general gynecology clinic: prospective cohort study via openalex
- Role of K-ras and Pten in the development of mouse models of endometriosis and endometrioid ovarian cancer via openalex
- Simultaneous Detection and Evaluation of Four Subsets of CD4+ T Lymphocyte in Lesions and Peripheral Blood in Endometriosis via openalex
- Single-cell transcriptome analysis reveals endometrial immune microenvironment in minimal/mild endometriosis via openalex
- Single-cell transcriptomic analysis of endometriosis provides insights into fibroblast fates and immune cell heterogeneity via openalex
- The association between endometriosis and autoimmune diseases: a systematic review and meta-analysis via openalex
- The endometrial immune environment of women with endometriosis via openalex
- The role of iron in the pathogenesis of endometriosis: a systematic review via openalex
- T regulatory lymphocytes in patients with endometriosis via openalex
- “What do we know about regulatory T cells and endometriosis? A systematic review” via openalex
- W4290888466 via openalex
- W4304163206 via openalex
- W4309362680 via openalex
- W4312198763 via openalex
- W4313830852 via openalex
- W4323364328 via openalex
- W4380590751 via openalex
- W4391131758 via openalex
- W6655769571 via openalex
- W6683751226 via openalex
- W2007631222 via openalex
- W2022072705 via openalex
- W2022630432 via openalex
- W2056652832 via openalex
- W2060523664 via openalex
- W2072853625 via openalex
- W2114866206 via openalex
- W2124221440 via openalex
- W2130222408 via openalex
- W2131621879 via openalex
- W2133655433 via openalex
- W2148226248 via openalex
- W2152508754 via openalex
- W2162819001 via openalex
- W2163315477 via openalex
- W2165847331 via openalex
- W2219450326 via openalex
- W2291907210 via openalex
- W2535407918 via openalex
- W2610718608 via openalex
- W2797582001 via openalex
- W2886611160 via openalex
- W2917646500 via openalex
- W2959691293 via openalex
- W2993085115 via openalex
- W3002250110 via openalex
- W3016634006 via openalex
- W3034038263 via openalex
- W3044473529 via openalex
- W3153017943 via openalex
- W3170524323 via openalex
- W4286489005 via openalex
Cited by (17)
- Endometriosis: Epidemiology, Risk Factors, Molecular Mechanisms, Diagnosis, and Management 2026
- Metabolic remodeling of endometriosis microenvironment: Energy stress and immune evasion 2026
- Immune-epigenetic-metabolic crosstalk: attempting to unravel the multidimensional mechanisms of immune evasion in endometriosis 2026
- Prospects and Challenges of TCR Repertoire Sequencing in Endometriosis Research 2026
- Antioxidant dietary patterns mitigate pain and raise psychological wellbeing in ovarian endometrioma: surgical status shapes associations 2026
- PBMC-derived FGF, PDGF, VEGF and GM-CSF secretion in endometriosis: a case-control in vitro study 2026
- Endometriosis and Ovarian Cancer: Insights from NHANES and Mendelian Randomization Analysis 2025
- Beyond one-size-fits-all: single-cell transcriptomic signatures predict drug efficacy and reveal responder subgroups in endometriosis 2025
- Causal links and mediating effects of lipid metabolism, immune cells, and inflammatory proteins in endometriosis: Evidence from Mendelian randomization 2025
- Genetic and Epigenetic Components in the Pathogenesis of Adenomyosis and Endometriosis in Adolescents 2025
- Insights into inflammatory gene expression in endometriosis: a comparative evaluation of tissue biopsy samples 2025
- Endometriosis and autoimmunity 2025
- Genetic and Epigenetic Components in the Pathogenesis of Adenomyosis and Endometriosis in Adolescents 2025
- Causal links and mediating effects of lipid metabolism, immune cells, and inflammatory proteins in endometriosis: Evidence from Mendelian randomization 2025
- Reframing Endometriosis: Interplay of NETs, Macrophages, and Lymphocytes at the Crossroads of Disease Progression, Infertility, and Malignant Transformation 2025
- Combined with bioinformatics and machine learning, the diagnostic model, Immunological features and subtypes of stage IV endometriosis with infertility were analyzed 2024
- MCP-1 exerts the inflammatory response via ILK activation during endometriosis pathogenesis 2024
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- europepmc
- last seen: 2026-09-04T06:17:57.233406+00:00
- openalex
- last seen: 2026-06-10T17:14:06.276822+00:00
- pubmed
- last seen: 2026-09-04T06:15:41.909829+00:00
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