肌生长抑制素:在人类女性生殖和生育中的多功能作用。

Sijia Wang, Lanlan Fang, Luping Cong, Jacqueline Pui Wah Chung, Tin Chiu Li, David Yiu Leung Chan
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引用次数: 6

摘要

肌生长抑制素(MSTN)是转化生长因子β (TGF-β)超家族的成员,最初在肌肉骨骼系统中被确定为骨骼肌生长的负调节因子。近年来,MSTN在肌肉骨骼系统之外的功能作用引起了研究者的兴趣,这方面的研究也越来越多。值得注意的是,MSTN的表达及其在各种生殖器官(包括卵巢、胎盘和子宫)中的潜在活性最近得到了研究。近年来发表的大量研究表明,MSTN在人类生殖和生育中起着至关重要的作用,包括调节卵泡发育、卵巢类固醇生成、颗粒细胞增殖和卵母细胞成熟调节。此外,来自临床样本的研究结果表明,MSTN可能在子宫肌瘤、子痫前期(PE)、卵巢过度刺激综合征(OHSS)和多囊卵巢综合征(PCOS)等多种生殖疾病的发病机制中发挥关键作用。关于MSTN与女性生殖系统相关的文献尚未见全面综述。本文综述了生殖医学中的基因及其潜在影响。我们总结了MSTN在女性生殖系统不同腔室中的表达。随后,我们讨论了MSTN在与女性生育能力和生殖相关疾病相关的生理和几种病理条件中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Myostatin: a multifunctional role in human female reproduction and fertility - a short review.

Myostatin: a multifunctional role in human female reproduction and fertility - a short review.

Myostatin (MSTN) is member of the transforming growth factor β (TGF-β) superfamily and was originally identified in the musculoskeletal system as a negative regulator of skeletal muscle growth. The functional roles of MSTN outside of the musculoskeletal system have aroused researchers' interest in recent years, with an increasing number of studies being conducted in this area. Notably, the expression of MSTN and its potential activities in various reproductive organs, including the ovary, placenta, and uterus, have recently been examined. Numerous studies published in the last few years demonstrate that MSTN plays a critical role in human reproduction and fertility, including the regulation of follicular development, ovarian steroidogenesis, granule-cell proliferation, and oocyte maturation regulation. Furthermore, findings from clinical samples suggest that MSTN may play a key role in the pathogenesis of several reproductive disorders such as uterine myoma, preeclampsia (PE), ovary hyperstimulation syndrome (OHSS), and polycystic ovarian syndrome (PCOS). There is no comprehensive review regarding to MSTN related to the female reproductive system in the literature. This review serves as a summary of the genes in reproductive medicine and their potential influence. We summarized MSTN expression in different compartments of the female reproductive system. Subsequently, we discuss the role of MSTN in both physiological and several pathological conditions related to the female fertility and reproduction-related diseases.

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