研究概要
背景与目的:子宫内膜异位症与慢性炎症、免疫失调、雌激素依赖性生长、氧化应激、类固醇激素代谢改变、上皮屏障完整性受损以及生物活性微生物代谢产物的产生有关。
中文摘要
背景与目的:子宫内膜异位症与慢性炎症、免疫失调、雌激素依赖性生长、氧化应激、类固醇激素代谢改变、上皮屏障完整性受损以及生物活性微生物代谢产物的产生相关。这些相互关联的改变原则上被认为可形成一个允许恶性转化的局部微环境。本叙述性综述探讨子宫内膜异位症相关的肠道和生殖道微生物群失调是否可能作为一种假设性的生物学调节因子,将这些多轴变化与子宫内膜癌发生联系起来,并关注免疫学、内分泌、代谢、微生物代谢产物、氧化及屏障相关通路。材料与方法:我们以叙述性方式整合了当前关于与子宫内膜稳态相关的肠道和生殖道微生物群改变的证据,重点关注雌激素组、低生物量子宫微生物群落、炎症和免疫信号传导、微生物代谢产物以及与癌发生相关的通路。结果:现有数据提示,菌群失调可能通过相互关联的内分泌、炎症、代谢和免疫机制影响子宫内膜癌发生。已关注到乳酸杆菌优势丧失、厌氧和促炎类群富集、雌激素再循环改变、孕激素抵抗、Toll样受体激活、NF-κB/STAT3信号传导、COX-2/PGE2活性、PI3K/AKT/mTOR通路激活、氧化应激、巨噬细胞极化以及NK 细胞监视功能受损。这些改变可能促成一种以持续性炎症、免疫控制缺陷和子宫内膜稳态破坏为特征的容许性微环境。然而,当前文献仍受限于样本量小且异质性大、以横断面设计为主、污染风险以及显著的方法学差异,尤其是在低生物量子宫样本中。结论:当前证据支持以下观点:微生物组失调是一种情境依赖性的生物调节因子,与子宫内膜癌发生相关的内分泌、炎症、代谢、免疫、氧化和屏障相关通路相互交叉。微生物组失调应被视为一种假设性的促进因素,而非已确立的因果驱动因素。其近期转化相关性在生物标志物开发和风险分层方面似乎大于直接的微生物组导向治疗。需要纵向、标准化和功能整合的研究来阐明微生物组相关特征能否转化为子宫内膜癌中具有临床意义的预防和管理策略。
展开英文摘要原文
Background and Objectives: Endometriosis is associated with chronic inflammation, immune dysregulation, oestrogen-dependent growth, oxidative stress, altered steroid hormone metabolism, compromised epithelial barrier integrity, and the production of bioactive microbial metabolites. These interconnected alterations have been proposed to create, in principle, a permissive local microenvironment for malignant transformation. This narrative review examines whether endometriosis-associated dysregulation of the gut and reproductive tract microbiota may act as a hypothetical biological modulator linking these multi-axis changes to endometrial carcinogenesis, with attention to immunological, endocrine, metabolic, microbial-metabolite, oxidative, and barrier-related pathways. Material and Methods : We narratively integrated current evidence on gut and reproductive tract microbiota alterations relevant to endometrial homeostasis, with emphasis on the estrobolome, low-biomass uterine microbial communities, inflammatory and immune signaling, microbial metabolites, and pathways implicated in carcinogenesis. Results: Available data suggest that dysbiosis may influence endometrial carcinogenesis through interconnected endocrine, inflammatory, metabolic, and immune mechanisms. Attention has been given to loss of Lactobacillus dominance, enrichment of anaerobic and pro-inflammatory taxa, altered estrogen recirculation, progesterone resistance, Toll-like receptor activation, NF-κB/STAT3 signaling, COX-2/PGE2 activity, PI3K/AKT/mTOR pathway activation, oxidative stress, macrophage polarization, and impaired natural killer cell surveillance. These alterations may contribute to a permissive microenvironment characterized by persistent inflammation, defective immune control, and disrupted endometrial homeostasis. However, the current literature remains limited by small and heterogeneous cohorts, predominantly cross-sectional designs, contamination risk, and marked methodological variability, particularly in low-biomass uterine samples. Conclusions: Current evidence supports the view that microbiome dysregulation is a context-dependent biological modulator that intersects with endocrine, inflammatory, metabolic, immune, oxidative, and barrier-related pathways relevant to endometrial carcinogenesis. Microbiome dysbiosis should be regarded as a hypothetical contributory factor rather than as an established causal driver. Its near-term translational relevance appears greater for biomarker development and risk stratification than for immediate microbiome-directed therapy. Longitudinal, standardized, and functionally integrated studies are needed to clarify whether microbiome-associated signatures can be translated into clinically meaningful prevention and management strategies in endometrial cancer.
论文信息
- 作者
- Anastasiu CV、Dimienescu OG、Dinuță-Smeu MA、Moga MA、Grigorescu OD、Gugiu G、Bisoc A
- 单位
- Faculty of Medicine, Transilvania University of Brasov, 500036 Brașov, Romania.Italy
- 文献类型
- 综述
- 期刊
- Medicina (Kaunas, Lithuania)2026 Aug 17