Yuxin Wang, Yi Guo, Jiajia Ren, Qiling Liu, Chong Wang
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引用次数: 0
Abstract
Earlier research has demonstrated that developmental exposure to bisphenol A (BPA) has persistent impacts on both adult brain growth and actions. It has been suggested that BPA might obstruct the methylation coding of the genes in the brain. In this study, the methylation changes in the hippocampus tissue of male rat pups were examined following prenatal BPA exposure. Pregnant Sprague-Dawley rats were treated with either vehicle (tocopherol-stripped corn oil) or BPA (4, 40, or 400 μg/kg·body weight/day) throughout the entire duration of gestation and lactation. At 3 weeks of age, the male rat offspring were euthanized, and the hippocampus were dissected out for analysis. The expression levels of DNA methyltransferases (DNMT1, DNMT3A, and DNMT3B) and DNA demethylases (TET1, Gadd45a, Gadd45b, and Apobec1) were analyzed in the hippocampus by means of quantitative real-time polymerase chain reaction and Western blotting, respectively. The results showed that prenatal exposure to BPA upregulated the expression of enzymes associated with DNA methylation and demethylation processes in the hippocampus of male rat offspring. These findings suggest that prenatal exposure to a low dose of BPA could potentially disrupt the balance of methylation and demethylation in the hippocampus, thereby perturbing epigenetic modifications. This may represent a neurotoxicity mechanism of BPA.
早先的研究表明,发育期接触双酚 A(BPA)会对成年后的大脑生长和行动产生持续影响。有研究认为,双酚 A 可能会阻碍大脑中基因的甲基化编码。本研究检测了雄性幼鼠在产前接触双酚 A 后海马组织的甲基化变化。怀孕的 Sprague-Dawley 大鼠在整个妊娠期和哺乳期都接受了载体(脱脂玉米油)或双酚 A(4、40 或 400 μg/kg 体重/天)处理。3周大的雄性后代被安乐死,解剖海马进行分析。通过实时定量聚合酶链式反应和 Western 印迹法,分别分析了 DNA 甲基转移酶(DNMT1、DNMT3A 和 DNMT3B)和 DNA 去甲基化酶(TET1、Gadd45a、Gadd45b 和 Apobec1)在海马中的表达水平。结果表明,产前暴露于双酚 A 会上调雄性大鼠后代海马中与 DNA 甲基化和去甲基化过程相关的酶的表达。这些发现表明,产前接触低剂量的双酚 A 有可能会破坏海马中甲基化和去甲基化的平衡,从而扰乱表观遗传修饰。这可能是双酚 A 的一种神经毒性机制。
期刊介绍:
Toxicology & Industrial Health is a journal dedicated to reporting results of basic and applied toxicological research with direct application to industrial/occupational health. Such research includes the fields of genetic and cellular toxicology and risk assessment associated with hazardous wastes and groundwater.