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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >GABAergic precursor transplantation into the prefrontal cortex prevents phencyclidine-induced cognitive deficits.
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GABAergic precursor transplantation into the prefrontal cortex prevents phencyclidine-induced cognitive deficits.

机译:GABA能前体移植到前额叶皮层可防止苯环利定诱发的认知功能障碍。

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Phencyclidine (PCP) is a noncompetitive NMDA receptor antagonist, and it induces schizophreniform cognitive deficits in healthy humans and similar cognitive deficits in rodents. Although the PCP-induced cognitive deficits appear to be accompanied and possibly caused by dysfunction of GABAergic inhibitory interneurons in the prefrontal cortex (PFC), the potential benefit(s) of GABAergic interneuron manipulations on PCP-induced cognitive deficits remains unexplored. In this study we show that when embryonic medial ganglionic eminence (MGE) cells, many of which differentiate into cortical GABAergic interneurons in situ, were grafted into the medial PFC (mPFC) of neonatal mice, they differentiated into a specific class of GABAergic interneurons and became functionally integrated into the host neuronal circuitry in adults. Prior MGE cell transplantation into the mPFC significantly prevented the induction of cognitive and sensory-motor gating deficits by PCP. The preventive effects were not reproduced by either transplantation of cortical projection neuron precursors into the mPFC or transplantation of MGE cells into the occipital cortex. The preventive effects of MGE cell transplantation into the mPFC were accompanied by activation of callosal projection neurons in the mPFC. These findings suggest that increasing GABAergic interneuron precursors in the PFC may contribute to the development of a cell-based approach as a novel means of modulating the PFC neuronal circuitry and preventing schizophreniform cognitive deficits.
机译:苯环利定(PCP)是一种非竞争性NMDA受体拮抗剂,它可诱发健康人的裂殖肾状认知功能障碍和啮齿类动物的类似认知功能障碍。尽管PCP诱导的认知功能障碍似乎是由前额叶皮层(PFC)中的GABA抑制性中间神经元功能障碍引起并可能引起的,但仍未探索GABAergic中间神经元操作对PCP诱导的认知缺陷的潜在益处。在这项研究中,我们表明,当将许多原位分化为皮质GABA能中神经元的胚胎内侧神经节(MGE)细胞移植到新生小鼠的内侧PFC(mPFC)中时,它们会分化为一类特定的GABA能中神经元和在功能上已整合到成年人的宿主神经元回路中。先前将MGE细胞移植到mPFC中可显着阻止PCP诱导认知和感觉运动门控功能障​​碍。通过将皮质投射神经元前体移植到mPFC中或将MGE细胞移植到枕叶中均无法产生预防作用。 MGE细胞移植到mPFC中的预防作用伴随着mPFC中call体投射神经元的激活。这些发现表明,PFC中GABA能中间神经元前体的增加可能有助于开发基于细胞的方法,将其作为调节PFC神经元回路和预防精神分裂症型认知缺陷的新手段。

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