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高乳脂肪饮食对暴露于双酚A的雌性大鼠胚胎着床的影响。

Effects of High-Butterfat Diet on Embryo Implantation in Female Rats Exposed to Bisphenol A.

作者信息

Martinez Alan M, Cheong Ana, Ying Jun, Xue Jingchuan, Kannan Kurunthachalam, Leung Yuet-Kin, Thomas Michael A, Ho Shuk-Mei

机构信息

Division of Reproductive Endocrinology & Infertility, Department of Obstetrics & Gynecology, University of Cincinnati College of Medicine, Cincinnati, Ohio.

Division of Environmental Genetics and Molecular Toxicology, Department of Environmental Health, University of Cincinnati College of Medicine, Cincinnati, Ohio Center for Environmental Genetics, University of Cincinnati College of Medicine, Cincinnati, Ohio.

出版信息

Biol Reprod. 2015 Dec;93(6):147. doi: 10.1095/biolreprod.115.131433. Epub 2015 Oct 28.

Abstract

Bisphenol A (BPA) is an endocrine disruptor associated with poor pregnancy outcomes in human and rodents. The effects of butterfat diets on embryo implantation and whether it modifies BPA's actions are currently unknown. We aimed to determine the effects of butterfat diet on embryo implantation success in female rats exposed to an environmentally relevant dose of BPA. Female Sprague-Dawley rats were exposed to dietary butterfat (10% or 39% kcal/kg body weight [BW]) in the presence or absence of BPA (250 μg/kg BW) or ethinylestradiol (0.1 μg/kg BW) shortly before and during pregnancy to assess embryo implantation potentials by preimplantation development and transport, in vitro blastulation, outgrowth, and implantation. On gestational day (GD) 4.5, rats treated with BPA alone had higher serum total BPA level (2.3-3.7 ng/ml). They had more late-stage preimplantation embryos, whereas those receiving high butterfat (HBF) diet had the most advanced-stage embryos; dams cotreated with HBF and BPA had the most number of advanced embryos. BPA markedly delayed embryo transport to the uterus, but neither amount of butterfat had modifying effects. An in vitro implantation assay showed HBF doubled the outgrowth area, with BPA having no effect. In vivo, BPA reduced the number of implanted embryos on GD8, and cotreatment with HBF eliminated this adverse effect. HBF diet overall resulted in more and larger GD8 embryos. This study reveals the implantation disruptive effects of maternal exposure to an environmentally relevant dose of BPA and identifies HBF diet as a modifier of BPA in promoting early embryonic health.

摘要

双酚A(BPA)是一种内分泌干扰物,与人类和啮齿动物不良的妊娠结局有关。目前尚不清楚乳脂肪饮食对胚胎着床的影响以及它是否会改变双酚A的作用。我们旨在确定乳脂肪饮食对暴露于环境相关剂量双酚A的雌性大鼠胚胎着床成功率的影响。在妊娠前及妊娠期间,将雌性斯普拉格-道利大鼠暴露于含或不含双酚A(250μg/kg体重)或乙炔雌二醇(0.1μg/kg体重)的乳脂肪饮食(10%或39%千卡/千克体重[BW])中,通过着床前发育和转运、体外囊胚形成、生长及着床来评估胚胎着床潜力。在妊娠第4.5天,单独用双酚A处理的大鼠血清总双酚A水平较高(2.3 - 3.7ng/ml)。它们有更多的晚期着床前胚胎,而那些接受高脂肪(HBF)饮食的大鼠有最晚期的胚胎;同时接受HBF和双酚A处理的母鼠有最多数量的晚期胚胎。双酚A显著延迟胚胎向子宫的转运,但两种乳脂肪量均无调节作用。体外着床试验表明,HBF使生长面积增加了一倍,而双酚A没有影响。在体内,双酚A减少了妊娠第8天着床胚胎的数量,而与HBF共同处理消除了这种不良影响。总体而言,HBF饮食导致妊娠第8天的胚胎更多且更大。这项研究揭示了母体暴露于环境相关剂量双酚A对着床的干扰作用,并确定HBF饮食是促进早期胚胎健康的双酚A调节剂。

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