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围产期双酚 A 和 17β 雌二醇暴露的影响:比较激素受体反应。

Impact of perinatal bisphenol A and 17β estradiol exposure: Comparing hormone receptor response.

机构信息

Department of Biology, Institute of Biosciences, Humanities and Exact Sciences, São Paulo State University (UNESP), Rua Cristóvão Colombo 2265, Jardim Nazareth, 15054-000, São José do Rio Preto, São Paulo, Brazil.

Federal University of São João del Rei (UFSJ), Campus Centro Oeste Dona Lindu, Avenida Sebastião Gonçalves Coelho, 400, Bairro Chanadour, 35501-296, Divinópolis, Minas Gerais, Brazil.

出版信息

Ecotoxicol Environ Saf. 2020 Jan 30;188:109918. doi: 10.1016/j.ecoenv.2019.109918. Epub 2019 Nov 18.

DOI:10.1016/j.ecoenv.2019.109918
PMID:31753310
Abstract

Hormonal regulation controls mammary gland (MG) development. Therefore some hormone-related factors can disrupt the early phases of MGs development, making the gland more susceptible to long term modifications in its response to circulating hormones. Endocrine disruptors, such as bisphenol A (BPA), are able to cause alterations in hormone receptor expression, leading to changes in the cell proliferation index, which may expose the tissue to neoplastic alterations. Thus, we evaluated the variations in hormone receptor expression in the MG of 6-month old Mongolian gerbils exposed to BPA and 17β estradiol during the perinatal period. Receptors for estrogen alpha (ERα), beta (ERβ), progesterone (PGR), prolactin (PRL-R), and co-localization of connexin 43 (Cx43) and ERα in gerbils were analyzed, and serum concentrations of estradiol and progesterone were assessed. No alterations in body, liver, and ovary-uterus complex weights were observed. However, there was an increase in epithelial ERα expression in the 17β estradiol (E2) group and in PGR in the BPA group. Although immunohistochemistry did not show alterations in ERβ expression, western blotting revealed a decrease in this protein in the BPA group. PRL-R was more present in epithelial cells in the vehicle control (VC), E2, and BPA groups in comparison to the intact control group. Cx43 was more frequent in E2 and BPA groups, suggesting a protective response from the gland against possible malignancy. Serum concentration of estradiol reduced in VC, E2, and BPA groups, confirming that alterations also impacts steroid levels. Consequently, perinatal exposure to BPA and the reference endogenous estrogen, 17β estradiol, are able to increase the tendency of endocrine disruption in MG in a long term manner, since repercussions are observed even 6 months after exposure.

摘要

激素调节控制乳腺(MG)的发育。因此,一些与激素相关的因素可以破坏乳腺早期的发育,使腺体更容易受到循环激素长期变化的影响。内分泌干扰物,如双酚 A(BPA),能够引起激素受体表达的改变,导致细胞增殖指数的变化,从而使组织暴露于肿瘤改变的风险中。因此,我们评估了围产期暴露于 BPA 和 17β 雌二醇的 6 月龄蒙古沙鼠乳腺中激素受体表达的变化。分析了雌激素 alpha(ERα)、beta(ERβ)、孕激素(PGR)、催乳素(PRL-R)受体的表达,并评估了血清雌二醇和孕酮的浓度。未观察到体重、肝脏和卵巢-子宫复合体重量的变化。然而,17β 雌二醇(E2)组的上皮细胞 ERα 表达和 BPA 组的 PGR 表达增加。虽然免疫组织化学未显示 ERβ 表达的改变,但 Western blot 显示 BPA 组中该蛋白减少。与完整对照组相比,载体对照组(VC)、E2 组和 BPA 组的上皮细胞中 PRL-R 更为丰富。Cx43 在 E2 和 BPA 组中更为常见,表明腺体对可能的恶性肿瘤有保护反应。VC、E2 和 BPA 组的雌二醇血清浓度降低,证实了这些改变也会影响类固醇水平。因此,围产期暴露于 BPA 和参考内源性雌激素 17β 雌二醇能够以长期的方式增加 MG 内分泌干扰的倾向,因为即使在暴露 6 个月后仍能观察到影响。

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