揭开临床 FSH 的谜团:小卵巢储备母牛模型的启示

IF 2.7 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
James J. Ireland, Kaitlin R. Karl, Keith E. Latham
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引用次数: 0

摘要

在辅助生殖技术(ART)中,高剂量的促卵泡激素(FSH)用于卵巢刺激,以最大限度地恢复用于体外受精(IVF)的卵母细胞数量。高剂量卵泡刺激素是否对胚胎生存能力有害仍有争议。来自许多临床研究的证据表明,卵泡刺激素剂量与妇女活产率呈负相关。这种效应的机制基础一直难以捉摸。本文综述了20多年来使用一种独特的生物医学模型——小卵巢储备小母牛(SORH)的研究工作。这些研究表明,过量的FSH剂量可以通过卵巢细胞的多种细胞信号通路破坏基因表达,导致卵泡过度刺激发育不良(FHD)。这损害了排卵大小的卵泡对促性腺激素的反应、产生雌二醇和排卵的能力,导致卵丘过早膨胀和卵母细胞成熟,并损害卵母细胞的受精率。因此,SORH模型为卵巢刺激期间过量FSH有害影响的性质和机制提供了新的见解。SORH模型对于基础研究和发现临床优化FSH剂量以提高IVF成功率和ART结果的方法一直很有价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Unraveling the Clinical FSH Conundrum: Insights From the Small Ovarian Reserve Heifer Model

Unraveling the Clinical FSH Conundrum: Insights From the Small Ovarian Reserve Heifer Model

High doses of follicle stimulating hormone (FSH) are used during ovarian stimulation to maximize the number of oocytes recovered for in vitro fertilization (IVF) during assisted reproductive technology (ART) in women. Whether high FSH doses are detrimental to embryo viability remains controversial. Evidence from many clinical studies revealed that FSH dose is inversely correlated with live birth rate in women. The mechanistic basis for this effect has been elusive. This review summarizes over 20 years of work using a unique biomedical model, the small ovarian reserve heifer (SORH). Those studies revealed that excessive FSH doses can disrupt gene expression via multiple cell-signaling pathways in ovarian cells, resulting in follicular hyperstimulation dysgenesis (FHD). This compromises the capacity of ovulatory-size follicles to respond to gonadotropins, produce estradiol and ovulate, causes premature cumulus expansion and oocyte maturation, and impairs the fertilizability of oocytes. The SORH model has thus provided new insights into the nature and mechanisms of the deleterious effects of excessive FSH doses during ovarian stimulation. The SORH model has been and remains valuable for basic research and for the discovery of ways to optimize FSH dosing clinically to improve IVF success and ART outcomes.

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来源期刊
CiteScore
5.20
自引率
0.00%
发文量
78
审稿时长
6-12 weeks
期刊介绍: Molecular Reproduction and Development takes an integrated, systems-biology approach to understand the dynamic continuum of cellular, reproductive, and developmental processes. This journal fosters dialogue among diverse disciplines through primary research communications and educational forums, with the philosophy that fundamental findings within the life sciences result from a convergence of disciplines. Increasingly, readers of the Journal need to be informed of diverse, yet integrated, topics impinging on their areas of interest. This requires an expansion in thinking towards non-traditional, interdisciplinary experimental design and data analysis.
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