国际妇产科学杂志 ›› 2026, Vol. 53 ›› Issue (3): 335-340.doi: 10.12280/gjfckx.20251083

• 普通妇科疾病及相关研究:综述 • 上一篇    下一篇

外泌体在子宫内膜纤维化中的作用机制与潜在诊疗应用

杨燕, 闫锴, 周登莲, 邓鑫()   

  1. 611430 成都市新津区中医医院药学部(杨燕);眉山市第二人民医院药剂科(闫锴);西南医科大学教务处(周登莲),代谢性心血管疾病医药基础研究创新中心(邓鑫)
  • 收稿日期:2025-09-22 出版日期:2026-06-15 发布日期:2026-07-06
  • 通讯作者: 邓鑫 E-mail:xindengcn@swmu.edu.cn
  • 基金资助:
    泸州市科技计划重点项目(2022-JYJ-144);西南医科大学校级重点科研项目(2022ZD009)

Exosomes in Endometrial Fibrosis: Mechanisms and Potential Diagnostic and Therapeutic Applications

YANG Yan, YAN Kai, ZHOU Deng-lian, DENG Xin()   

  1. Department of Pharmacy, Chengdu Xinjin District Hospital of Traditional Chinese Medicine, Chengdu 611430, China (YANG Yan); Department of Pharmacy, The Second People's Hospital of Meishan City, Meishan 620500, Sichuan Province, China (YAN Kai);Office of Academic Affairs (ZHOU Deng-lian), Basic Medicine Research Innovation Center for Cardiometabolic Diseases (DENG Xin), Southwest Medical University, Luzhou 646000, Sichuan Province, China
  • Received:2025-09-22 Published:2026-06-15 Online:2026-07-06
  • Contact: DENG Xin E-mail:xindengcn@swmu.edu.cn

摘要:

子宫内膜纤维化(endometrial fibrosis,EF)是导致不孕、月经异常等妇科疾病的重要病理基础,常由宫腔手术、反复感染等诱发,现有治疗方法疗效有限且复发率高。近年来,外泌体作为细胞间通讯的关键媒介,在EF进程中呈现显著的来源依赖性双向调控作用。干细胞来源的外泌体主要发挥抗纤维化效应,通过携带微RNA、长链非编码RNA和蛋白等活性分子,调控转化生长因子-β/Smad、Yes相关蛋白、结缔组织生长因子等核心信号通路,抑制上皮-间质转化、肌成纤维细胞活化和细胞外基质过度沉积;同时调控铁死亡、自噬过程,抑制炎症反应,促进血管生成,从而有效改善子宫内膜微环境并修复其结构与功能。相反,受损子宫内膜或异位病灶来源的外泌体常携带促纤维化分子,激活炎症级联反应并加速纤维化进展。外泌体衍生的非编码RNA和蛋白标志物在血清、宫腔灌洗液等体液中异常表达,具有重要的无创诊断潜力。外泌体有望成为EF精准诊疗的新型工具和靶点。

关键词: 子宫内膜, 纤维化, 外泌体, 生物标记, 诊断, 治疗

Abstract:

Endometrial fibrosis (EF) is a critical pathological basis for gynecological conditions such as infertility and abnormal menstruation. It is often induced by intrauterine procedures and recurrent infections, and current therapeutic approaches have limited efficacy with a high recurrence rate. In recent years, exosomes, as key mediators of intercellular communication, have demonstrated significant source-dependent bidirectional regulatory roles in the progression of EF. Stem cell-derived exosomes primarily exert antifibrotic effects. By carrying bioactive molecules such as microRNAs, long non-coding RNAs, and proteins, they regulate core signaling pathways including transforming growth factor-β/Smad, Yes-associated protein, and connective tissue growth factor. This regulation inhibits epithelial-mesenchymal transition, myofibroblast activation, and excessive deposition of the extracellular matrix. Simultaneously, they modulate processes like ferroptosis and autophagy, suppress inflammatory responses, and promote angiogenesis, thereby effectively improving the endometrial microenvironment and repairing its structure and function. In contrast, exosomes derived from damaged endometrium or ectopic lesions frequently carry profibrotic molecules, activating inflammatory cascades and accelerating fibrosis progression. Non-coding RNAs and protein biomarkers derived from exosomes show abnormal expression in body fluids such as serum and intrauterine lavage fluid, holding significant potential for non-invasive diagnosis. Exosomes are expected to become novel tools and targets for the precise diagnosis and treatment of EF.

Key words: Endometrium, Fibrosis, Exosomes, Biomarkers, Diagnosis, Therapy