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双酚S在单排卵物种模型的体外基础卵泡发生过程中损害雌二醇分泌。

Bisphenol S Impairs Oestradiol Secretion during In Vitro Basal Folliculogenesis in a Mono-Ovulatory Species Model.

作者信息

Vignault Claire, Cadoret Véronique, Jarrier-Gaillard Peggy, Papillier Pascal, Téteau Ophélie, Desmarchais Alice, Uzbekova Svetlana, Binet Aurélien, Guérif Fabrice, Elis Sebastien, Maillard Virginie

机构信息

CNRS, IFCE, INRAE, Université de Tours, PRC, 37380 Nouzilly, France.

Service de Médecine et Biologie de la Reproduction, CHRU de Tours, 37000 Tours, France.

出版信息

Toxics. 2022 Jul 30;10(8):437. doi: 10.3390/toxics10080437.

Abstract

Bisphenol S (BPS) affects terminal folliculogenesis by impairing steroidogenesis in granulosa cells from different species. Nevertheless, limited data are available on its effects during basal folliculogenesis. In this study, we evaluate in vitro the effects of a long-term BPS exposure on a model of basal follicular development in a mono-ovulatory species. We cultured ovine preantral follicles (180−240 μm, n = 168) with BPS (0.1 μM (possible human exposure dose) or 10 μM (high dose)) and monitored antrum appearance and follicular survival and growth for 15 days. We measured hormonal secretions (oestradiol (at day 13 [D13]), progesterone and anti-Müllerian hormone [D15]) and expression of key follicular development and redox status genes (D15) in medium and whole follicles, respectively. BPS (0.1 µM) decreased oestradiol secretion compared with the control (−48.8%, p < 0.001), without significantly impairing antrum appearance, follicular survival and growth, anti-Müllerian hormone and progesterone secretion and target gene expression. Thus, BPS could also impair oestradiol secretion during basal folliculogenesis as it is the case during terminal folliculogenesis. It questions the use of BPS as a safe BPA substitute in the human environment. More studies are required to elucidate mechanisms of action of BPS and its effects throughout basal follicular development.

摘要

双酚S(BPS)通过损害不同物种颗粒细胞中的类固醇生成来影响终末卵泡发生。然而,关于其在基础卵泡发生过程中的作用的数据有限。在本研究中,我们在体外评估了长期暴露于BPS对单排卵物种基础卵泡发育模型的影响。我们用BPS(0.1μM(可能的人体暴露剂量)或10μM(高剂量))培养绵羊腔前卵泡(180 - 240μm,n = 168),并监测卵泡腔出现情况以及卵泡存活和生长情况,持续15天。我们分别测量了培养基和整个卵泡中激素分泌(第13天[D13]的雌二醇、第15天的孕酮和抗苗勒管激素)以及关键卵泡发育和氧化还原状态基因的表达(D15)。与对照组相比,BPS(0.1μM)降低了雌二醇分泌(-48.8%,p < 0.001),但未显著损害卵泡腔出现、卵泡存活和生长、抗苗勒管激素和孕酮分泌以及靶基因表达。因此,BPS在基础卵泡发生过程中也可能损害雌二醇分泌,就像在终末卵泡发生时一样。这对在人类环境中使用BPS作为安全的双酚A替代品提出了质疑。需要更多研究来阐明BPS的作用机制及其在整个基础卵泡发育过程中的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9024/9412475/ef3385fd11af/toxics-10-00437-g001.jpg

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