首页> 美国卫生研究院文献>Cerebral Cortex (New York NY) >Cocaine Exposure Decreases GABA Neuron Migration from the Ganglionic Eminence to the Cerebral Cortex in Embryonic Mice
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Cocaine Exposure Decreases GABA Neuron Migration from the Ganglionic Eminence to the Cerebral Cortex in Embryonic Mice

机译:可卡因暴露减少了GABA神经元从神经节隆起迁移到胚胎小鼠的大脑皮层。

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摘要

Recurrent exposure of the developing fetus to cocaine produces persistent alterations in structure and function of the cerebral cortex. Neurons of the cerebral cortex are derived from two sources: projection neurons from the neuroepithelium of the dorsal pallium and interneurons from the ganglionic eminence of the basal telencephalon. The interneurons are GABAergic and reach the cerebral cortex via a tangential migratory pathway. We found that recurrent, transplacental exposure of mouse embryos to cocaine from embryonic day 8 to 15 decreases tangential neuronal migration and results in deficits in GABAergic neuronal populations in the embryonic cerebral wall. GABAergic neurons of the olfactory bulb, which are derived from the ganglionic eminence via the rostral migratory pathway, are not affected by the cocaine exposure suggesting a degree of specificity in the effects of cocaine on neuronal migration. Thus, one mechanism by which prenatal cocaine exposure exerts deleterious effects on cerebral cortical development may be by decreasing GABAergic neuronal migration from the ganglionic eminence to the cerebral wall. The decreased GABA neuron migration may contribute to persistent structural and functional deficits observed in the exposed offspring.
机译:发育中的胎儿反复接触可卡因会导致大脑皮层结构和功能的持续改变。大脑皮层的神经元有两种来源:背神经皮层的投射神经元和基底端神经节的神经节突出的神经元。中间神经元是GABA能的,并通过切向迁移途径到达大脑皮层。我们发现小鼠胚胎从第8天到第15天的可卡因反复经胎盘暴露会降低切向神经元迁移,并导致胚胎脑壁中GABA能神经元群体的缺陷。嗅球的GABA能神经元是通过鼻尖迁移途径从神经节突起中衍生出来的,不受可卡因暴露的影响,表明可卡因对神经元迁移的作用具有一定程度的特异性。因此,产前可卡因暴露对大脑皮层发育产生有害影响的一种机制可能是通过减少GABA能神经元从神经节突向脑壁的迁移。 GABA神经元迁移减少可能会导致在暴露的后代中观察到持续的结构和功能缺陷。

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