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Prenatal exposure to bisphenol A impacts neuronal morphology in the hippocampal CA1 region in developing and aged mice

机译:产前暴露于双酚A会影响发育中和衰老小鼠海马CA1区的神经元形态

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摘要

Bisphenol A (BPA), a widely used raw component of polycarbonate plastics and epoxy resins, has been reported to induce developmental neurotoxicity in offspring born to dams exposed to low doses of BPA; however, the toxicity mechanism remains elusive. To study the effects of in utero BPA exposure on neuronal morphology, we studied spine density and dendritic growth in the hippocampal CA1 of aged mice and developing mice prenatally exposed to low doses of BPA. Pregnant mice were orally administered BPA at a low dose of 0, 40, or 400 mu g/kg body weight/day on gestational days 8.5-17.5/18.5. Mouse progenies were euthanized at 3 weeks or 14 months, and their brains were analyzed for dendritic arborization of GFP-expressing neurons or spine densities of Golgi-stained neurons in the hippocampal CA1. Regardless of the dose, in utero BPA exposure reduced spine densities in the hippocampal CA1 of the 14-month-old mice. In the developing brain from the 3-week-old mice born to dams exposed to BPA at a dose of 400 mu g/kg body weight/day, overall length and branching number of basal dendrites but not apical dendrites were decreased. In utero low doses of BPA exposure disrupts hippocampal CA1 neuronal morphology during development, and this disruption is believed to persist in adulthood.
机译:据报道,双酚A(BPA)是聚碳酸酯塑料和环氧树脂的一种广泛使用的原始组分,可在大坝暴露于低剂量的BPA引起的后代中诱发发育神经毒性。然而,毒性机制仍然难以捉摸。为了研究子宫内BPA暴露对神经元形态的影响,我们研究了衰老小鼠和产前暴露于低剂量BPA的发育中小鼠海马CA1的脊柱密度和树突生长。在妊娠第8.5-17.5 / 18.5天,对怀孕的小鼠口服给予0、40或400μg / kg体重/天的低剂量BPA。在3周或14个月时对小鼠后代实施安乐死,并分析其大脑的海马CA1中表达GFP的神经元的树突状排列或高尔基染色神经元的脊柱密度。无论剂量如何,子宫内BPA暴露都会降低14个月大小鼠海马CA1的脊柱密度。在以400μg / kg体重/天的剂量暴露于BPA的母鼠所生的3周龄小鼠的发育中大脑中,基础树突的总长度和分支数减少了,但顶端树突的分支数却减少了。在子宫内,低剂量的BPA暴露会在发育过程中破坏海马CA1神经元的形态,并且这种破坏被认为会持续到成年期。

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