Additional file 3 of Vaginal and rectal microbiome contribute to genital inflammation in chronic pelvic pain
Observational
OA: green
CC0
AI-generated summary
This paper presents differential abundance statistical results of the rectal microbiome in various chronic pelvic pain and endometriosis patient groups compared to controls and subgroups.
One-sentence paraphrase of the abstract; not a substitute for reading it. No clinical advice. How this works
Abstract
Additional file 3: Table S11: Rectal differential abundance statistical results of the groups’ CPP and CPP-Endo compared to surgical controls. Table S12: Rectal differential abundance statistical results of the groups’ CPP-Endo compared to CPP. Table S13: Rectal differential abundance statistical results of the groups’ endometriosis stage 3/4 compared to endometriosis stage 1/2. Table S14: Rectal differential abundance statistical results of endometriosis locations peritoneum, multiple locations, or other sites compared to endometriosis of the ovary. Table S15: Rectal differential abundance statistical results of the groups’ ovarian cysts compared to no ovarian cysts. Table S16: Rectal differential abundance statistical results of the groups’ fibroids compared to no fibroids. Table S17: Rectal differential abundance statistical results of the groups’ abnormal uterine bleeding compared to no abnormal uterine bleeding. Table S18: Rectal differential abundance statistical results of the groups’ heavy menstrual bleeding compared to no heavy menstrual bleeding. Table S19: Rectal differential abundance statistical results of the groups’ irregular menstrual bleeding compared to no irregular menstrual bleeding.
My notes (saved in your browser only)
Condition tags
Citation neighborhood (2-hop)
Papers in the corpus that this work cites (lower rings, blue) and that cite this one (upper rings, green). Dot size scales with the paper's in-corpus citation count — bigger dot = more influential within the endo/adeno field. Click a dot to open that paper. Outer rings show 2-hop neighbours — papers reached through the immediate citers/citees. [ collapse to 1-hop ]
References (96)
- A More Diverse Cervical Microbiome Associates with Better Clinical Outcomes in Patients with Endometriosis: A Pilot Study via openalex
- Antibiotic therapy with metronidazole reduces endometriosis disease progression in mice: a potential role for gut microbiota via openalex
- Associations Between Endometriosis and Gut Microbiota via openalex
- Biomarkers for the Noninvasive Diagnosis of Endometriosis: State of the Art and Future Perspectives via openalex
- Can symptomatology help in the diagnosis of endometriosis? Findings from a national case-control study--Part 1 via openalex
- Chemokines in the pathogenesis of endometriosis and infertility via openalex
- Chronic Pelvic Pain: ACOG Practice Bulletin, Number 218 via openalex
- Chronic pelvic pain in endometriosis: an overview via openalex
- Concentrations of interferon-gamma-induced protein-10 (IP-10), an antiangiogenic substance, are decreased in peritoneal fluid of women with advanced endometriosis via openalex
- Delay in the diagnosis of endometriosis: a survey of women from the USA and the UK via openalex
- Efficacy of Anti-VEGF/VEGFR Agents on Animal Models of Endometriosis: A Systematic Review and Meta-Analysis via openalex
- Endometrial biomarkers for the non-invasive diagnosis of endometriosis via openalex
- Endometrial cytokines in patients with and without endometriosis evaluated for infertility via openalex
- Endometriosis and inflammatory bowel disease: A systematic review of the literature via openalex
- Endometriosis-Associated Macrophages: Origin, Phenotype, and Function via openalex
- Endometriosis induces gut microbiota alterations in mice via openalex
- Fibroblast growth factor receptor 2 promotes the proliferation, migration, and invasion of ectopic stromal cells via activation of extracellular-signal-regulated kinase signaling pathway in endometriosis via openalex
- G-CSF and IL-6 may be involved in formation of endometriosis lesions by increasing the expression of angiogenic factors in neutrophils via openalex
- Gut Microbiota Exceeds Cervical Microbiota for Early Diagnosis of Endometriosis via openalex
- Immunolocalization and regulation of the chemokine RANTES in human endometrial and endometriosis tissues and cells via openalex
- Inflammatory cytokines IL-6, IL-10, IL-13, TNF-α and peritoneal fluid flora were associated with infertility in patients with endometriosis via openalex
- Microbiota composition and distribution along the female reproductive tract of women with endometriosis via openalex
- Molecular detection of microbial colonization in cervical mucus of women with and without endometriosis via openalex
- New Opportunities for Endometrial Health by Modifying Uterine Microbial Composition: Present or Future? via openalex
- Pathophysiology, diagnosis, and management of endometriosis via openalex
- Saliva microRNA signature to diagnose endometriosis: A cost-effectiveness evaluation of the Endotest® via openalex
- Structural and molecular features of the endomyometrium in endometriosis and adenomyosis via openalex
- The bidirectional relationship between endometriosis and microbiome via openalex
- The Endobiota Study: Comparison of Vaginal, Cervical and Gut Microbiota Between Women with Stage 3/4 Endometriosis and Healthy Controls via openalex
- The gut microbiota: a puppet master in the pathogenesis of endometriosis? via openalex
- The microbiome and endometriosis via openalex
- The role of gut and genital microbiota and the estrobolome in endometriosis, infertility and chronic pelvic pain via openalex
- The role of the vaginal microbiome in distinguishing female chronic pelvic pain caused by endometriosis/adenomyosis via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
- (no identifier) via openalex
Source provenance
- openalex
- last seen: 2026-05-11T08:34:59.281429+00:00
License: CC0
· commercial use OK