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Bisphenol A, an endocrine-disrupting chemical, and brain development

机译:双酚A(一种破坏内分泌的化学物质)和大脑发育

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摘要

Bisphenol A (BPA) is an endocrine-disrupting chemical, widely used in various industries and the field of dentistry. The consequent increase in BPA exposure among humans has led us to some concerns regarding the potential deleterious effects on reproduction and brain development. The emphasis of this review is on the effects of prenatal and lactational exposure to low doses of BPA on brain development in mice. We demonstrated that prenatal exposure to BPA affected fetal murine neocortical development by accelerating neuronal differentiation/migration during the early embryonic stage, which was associated with up- and down-regulation of the genes critical for brain development, including the basic helix-loop-helix transcription factors. In the adult mice brains, both abnormal neocortical architecture and abnormal corticothalamic projections persisted in the group exposed to the BPA. Functionally, BPA exposure disturbed murine behavior, accompanied with a disrupted neurotransmitter system, including monoamines, in the postnatal development period and in adult mice. We also demonstrated that epigenetic alterations in promoter-associated CpG islands might underlie some of the effects on brain development after exposure to BPA.
机译:双酚A(BPA)是一种破坏内分泌的化学物质,广泛用于各个行业和牙科领域。因此,人类中双酚A暴露的增加导致我们对生殖和大脑发育的潜在有害影响有些担忧。这篇综述的重点是在产前和哺乳期暴露于低剂量的BPA对小鼠大脑发育的影响。我们证明,产前暴露于BPA会通过加速胚胎早期的神经元分化/迁移而影响胎儿鼠新皮质的发育,这与对大脑发育至关重要的基因(包括基本的螺旋-环-螺旋)的上调和下调有关转录因子。在成年小鼠的大脑中,暴露于BPA的组中既存在异常的新皮质结构,又存在异常的皮质丘脑突突。在功能上,在出生后发育期和成年小鼠中,BPA暴露会干扰鼠的行为,并破坏神经递质系统,包括单胺。我们还证明了与启动子相关的CpG岛中的表观遗传学改变可能是暴露于BPA后对大脑发育的某些影响的基础。

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