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双酚S对牛颗粒细胞和卵泡膜细胞的影响。

The impact of bisphenol S on bovine granulosa and theca cells.

作者信息

Campen K A, Lavallee M, Combelles Cmh

机构信息

Biology Department, Middlebury College, Middlebury, VT, USA.

出版信息

Reprod Domest Anim. 2018 Apr;53(2):450-457. doi: 10.1111/rda.13130. Epub 2018 Jan 12.

Abstract

Bisphenol S (BPS) is an endocrine-disrupting chemical with multiple potential mechanisms of action, including as an oestrogen receptor agonist. BPS is increasingly used in plastics and thermal receipts as a substitute for bisphenol A, which has been phased out due to concerns about human health implications. The ability of BPS to alter female reproductive function in mammals has not been widely studied, despite the importance of normal hormone signalling for female reproduction. The aim of this study was to investigate how BPS (in a wide range of doses, including very low doses) affects granulosa cell and theca cell steroid hormone production and cell viability in the bovine. Granulosa cell oestradiol production was stimulated when cells were exposed to 100 μM BPS under basal conditions, but there was no effect of BPS when cells were stimulated with follicle-stimulating hormone (FSH). Additionally, there was no effect of BPS on granulosa cell progesterone production or cell viability under basal or FSH-stimulated conditions. BPS did not affect theca cell androstenedione or progesterone production, or theca cell viability under basal or luteinizing hormone-stimulated conditions. This study suggests for the first time that BPS may alter oestradiol production by bovine granulosa cells, albeit at a concentration that is unlikely to be physiologically relevant. Further studies are needed to determine the effects of BPS on the bovine oocyte and on other functions of follicular cells.

摘要

双酚S(BPS)是一种具有多种潜在作用机制的内分泌干扰化学物质,包括作为雌激素受体激动剂。由于对人类健康影响的担忧,双酚A已被逐步淘汰,BPS越来越多地用于塑料和热敏纸中作为双酚A的替代品。尽管正常激素信号传导对雌性生殖很重要,但BPS改变哺乳动物雌性生殖功能的能力尚未得到广泛研究。本研究的目的是调查BPS(在广泛的剂量范围内,包括非常低的剂量)如何影响牛的颗粒细胞和卵泡膜细胞类固醇激素的产生以及细胞活力。在基础条件下,当细胞暴露于100μM BPS时,颗粒细胞雌二醇的产生受到刺激,但当用促卵泡激素(FSH)刺激细胞时,BPS没有影响。此外,在基础或FSH刺激条件下,BPS对颗粒细胞孕酮的产生或细胞活力没有影响。在基础或促黄体生成素刺激条件下,BPS不影响卵泡膜细胞雄烯二酮或孕酮的产生,也不影响卵泡膜细胞活力。本研究首次表明,BPS可能会改变牛颗粒细胞的雌二醇产生,尽管其浓度不太可能具有生理相关性。需要进一步研究以确定BPS对牛卵母细胞和卵泡细胞其他功能的影响。

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