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首页> 外文期刊>Environmental health perspectives. >Evaluation of Prenatal Exposure to Bisphenol Analogues on Development and Long-Term Health of the Mammary Gland in Female Mice
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Evaluation of Prenatal Exposure to Bisphenol Analogues on Development and Long-Term Health of the Mammary Gland in Female Mice

机译:产前双酚类似物暴露对雌性小鼠乳腺发育和长期健康的评估

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Background: Continued efforts to phase out bisphenol A (BPA) from consumer products have been met with the challenges of finding safer alternatives. Objectives: This study aimed to determine whether early-life exposure to BPA and its related analogues, bisphenol AF (BPAF) and bisphenol S (BPS), could affect female pubertal mammary gland development and long-term mammary health in mice. Methods: Timed pregnant CD-1 mice were exposed to vehicle, BPA (0.5, 5, 50 mg/kg), BPAF (0.05, 0.5, 5 mg/kg), or BPS (0.05, 0.5, 5 mg/kg) via oral gavage between gestation days 10–17. Mammary glands were collected from resulting female offspring at postnatal day (PND) 20, 28, 35, and 56, and at 3, 8, and 14 months for whole mount, histopathological evaluation, and quantitative real-time polymerase chain reaction (qPCR); serum steroid concentrations were also measured at these time points. Results: In the bisphenol-exposed mice, accelerated mammary gland development was evident during early puberty and persisted into adulthood. By late adulthood, mammary glands from bisphenol-exposed female offspring exhibited adverse morphology in comparison with controls; most prominent were undifferentiated duct ends, significantly more lobuloalveolar hyperplasia and perivascular inflammation, and various tumors, including adenocarcinomas. Effects were especially prominent in the BPAF 5 mg/kg and BPS 0.5 mg/kg groups. Serum steroid concentrations and mammary mRNA levels of Esr1 , Pgr , Ar , and Gper1 were similar to controls. Conclusions: These data demonstrate that prenatal exposure of mice to BPAF or BPS induced precocious development of the mammary gland, and that siblings were significantly more susceptible to spontaneous preneoplastic epithelial lesions and inflammation, with an incidence greater than that observed in vehicle- and BPA-exposed animals. https://doi.org/10.1289/EHP3189.
机译:背景:不断努力从消费产品中淘汰双酚A(BPA)已面临寻找更安全替代品的挑战。目的:本研究旨在确定BPA及其相关类似物双酚AF(BPAF)和双酚S(BPS)的早期生命暴露是否会影响雌性雌性乳腺发育和小鼠长期乳腺健康。方法:定时将怀孕的CD-1小鼠暴露于媒介物,BPA(0.5、5、50 mg / kg),BPAF(0.05、0.5、5 mg / kg)或BPS(0.05、0.5、5 mg / kg)中,在妊娠第10-17天之间进行管饲。从产后第20、28、35和56天以及第3、8和14个月的雌性后代中收集乳腺,以进行完整安装,组织病理学评估和实时定量聚合酶链反应(qPCR) ;在这些时间点也测量血清类固醇浓度。结果:在双酚暴露的小鼠中,青春期早期乳腺发育加速明显,并持续到成年。到成年后期,双酚暴露的雌性后代的乳腺与对照组相比表现出不利的形态。最突出的是未分化的导管末端,明显更多的小叶肺泡增生和血管周围炎症,以及各种肿瘤,包括腺癌。在BPAF 5 mg / kg和BPS 0.5 mg / kg组中,效果尤为突出。 Esr1,Pgr,Ar和Gper1的血清类固醇浓度和乳腺mRNA水平与对照组相似。结论:这些数据表明,产前小鼠暴露于BPAF或BPS会诱发乳腺的过早发育,并且兄弟姐妹对自发性肿瘤前上皮病变和炎症的敏感度更高,其发生率高于媒介物和BPA-暴露的动物。 https://doi.org/10.1289/EHP3189。

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