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Effects of oral exposure to bisphenol A on gene expression and global genomic DNA methylation in the prostate female mammary gland and uterus of NCTR Sprague-Dawley rats

机译:口服双酚A对NCTR Sprague-Dawley大鼠前列腺雌性乳腺和子宫中基因表达和整体基因组DNA甲基化的影响

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摘要

Bisphenol A (BPA), an industrial chemical used in the manufacture of polycarbonate and epoxy resins, binds to the nuclear estrogen receptor with an affinity 4–5 orders of magnitude lower than that of estradiol. We reported previously that “high BPA” (100,000 and 300,000 μg/kg body weight (bw)/day), but not “low BPA” [2.5–2700 μg/kg bw/day], induced clear adverse effects in NCTR Sprague-Dawley rats gavaged daily from gestation day 6 through postnatal day 90. The “high BPA” effects partially overlapped those of ethinyl estradiol (EE2, 0.5 and 5.0 μg/kg bw/day). To evaluate further the potential of “low BPA” to induce biological effects, here we assessed the global genomic DNA methylation and gene expression in the prostate and female mammary glands, tissues identified previously as potential targets of BPA, and uterus, a sensitive estrogen-responsive tissue. Both doses of EE2 modulated gene expression, including of known estrogen-responsive genes, and PND 4 global gene expression data showed a partial overlap of the “high BPA” effects with those of EE2. The “low BPA” doses modulated the expression of several genes; however, the absence of a dose response reduces the likelihood that these changes were causally linked to the treatment. These results are consistent with the toxicity outcomes.
机译:双酚A(BPA)是一种用于制造聚碳酸酯和环氧树脂的工业化学品,它以比雌二醇低4-5个数量级的亲和力与核雌激素受体结合。我们之前曾报道过,“高BPA”(100,000和300,000μg/ kg体重/天)而不是“低BPA” [2.5–2700μg/ kg体重/天]对NCTR有明显的不良影响。从妊娠第6天到出生后第90天,每天喂食Dawley大鼠。“高BPA”作用部分与乙炔雌二醇(EE2、0.5和5.0μg/ kg bw /天)重叠。为了进一步评估“低BPA”诱导生物效应的潜力,在这里我们评估了前列腺和雌性乳腺,先前被确定为BPA潜在靶标的组织以及子宫(一种敏感的雌激素)的整体基因组DNA甲基化和基因表达。反应组织。两种剂量的EE2调节基因表达,包括已知的雌激素响应基因,以及PND 4整体基因表达数据均显示“高BPA”效应与EE2的部分重叠。 “低双酚A”剂量调节了几个基因的表达。但是,没有剂量反应可以降低这些变化与治疗之间因果相关的可能性。这些结果与毒性结果一致。

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