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Matrix remodeling and endometriosis

机译:基质重塑和子宫内膜异位

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摘要

The physiological changes in endometriosis involving multiple steps of matrix remodeling include abnormal tissue growth, invasion, and adhesion formation. Endometriosis‐associated abnormal matrix remodeling is affected by several molecular factors including proteolytic enzymes and their inhibitors, which mediate tissue turnover throughout the reproductive tract to maintain the integrity of the endometrium, and ovarian steroids, which normally regulate reconstruction and breakdown of endometrium in the menstrual cycle. In addition, various growth factors, such as platelet‐derived growth factor, transform growth factor β, and epidermal growth factor, direct modulation of growth, activation, and chemotaxis which may facilitate endometrial cell adhesion onto the peritoneal mesothelium during the development of endometriosis. Furthermore, cell adhesion molecules are believed to be critically involved in most cellular‐level processes including cellular differentiation, motility, and attachment with the extracellular matrix. The present review focuses on the abnormal matrix remodeling process and its possible regulatory mechanism in association with endometriosis development. As a greater understanding of the cause of endometriosis is achieved, better treatment of the disease and its prevention become possible. (Reprod Med Biol 2005; >4: 93–99)
机译:子宫内膜异位症涉及多个基质重塑步骤的生理变化包括异常的组织生长,侵袭和粘连形成。与子宫内膜异位症相关的异常基质重塑受多种分子因素的影响,包括蛋白水解酶及其抑制剂(其介导整个生殖道的组织更新以维持子宫内膜的完整性)和卵巢类固醇,后者通常调节月经内膜的重建和分解。周期。此外,各种生长因子,例如血小板衍生的生长因子,转化生长因子β和表皮生长因子,直接调节生长,激活和趋化性,可能在子宫内膜异位症发展过程中促进子宫内膜细胞粘附到腹膜间皮上。此外,据信细胞粘附分子在大多数细胞水平的过程中至关重要,包括细胞分化,运动性以及与细胞外基质的附着。本文综述了子宫内膜异位症发展过程中异常基质的重塑过程及其可能的调控机制。随着人们对子宫内膜异位症病因的深入了解,对疾病的更好治疗及其预防成为可能。 (Reprod Med Biol 2005; > 4 :93-99)

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