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Layer 3 Excitatory and Inhibitory Circuitry in the Prefrontal Cortex: Developmental Trajectories and Alterations in Schizophrenia

机译:前额叶皮层中的3层兴奋性和抑制电路:精神分裂症的发育轨迹和改变

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摘要

Convergent evidence suggests that schizophrenia is a disorder of neurodevelopment with alterations in both early and late developmental processes hypothesized to contribute to the disease process. Abnormalities in certain clinical features of schizophrenia, such as working memory impairments, depend on distributed neural circuitry including the dorsolateral prefrontal cortex (DLPFC) and appear to arise during the protracted maturation of this circuitry across childhood and adolescence. In particular, the neural circuitry substrate for working memory in primates involves the coordinated activity of excitatory pyramidal neurons and a specific population of inhibitory gamma-aminobutyric acid neurons (i.e., parvalbumin-containing basket cells) in layer 3 of the DLPFC. Understanding the relationships between the normal development of-and the schizophrenia-associated alterations in-the DLPFC circuitry that subserves working memory could provide new insights into the nature of schizophrenia as a neurodevelopmental disorder. Consequently, we review the following in this article: 1) recent findings regarding alterations of DLPFC layer 3 circuitry in schizophrenia, 2) the developmental refinements in this circuitry that occur during the period when the working memory alterations in schizophrenia appear to arise and progress, and 3) how various adverse environmental exposures could contribute to developmental disturbances of this circuitry in individuals with schizophrenia.
机译:收敛证据表明,精神分裂症是一种神经发育障碍,早期和后期发育过程中的改变假设为疾病过程有助于造成疾病。精神分裂症的某些临床特征的异常,如工作记忆障碍,依赖于包括背侧前额定皮层(DLPFC)的分布式神经电路,并且在跨越儿童和青春期的该电路的延伸成熟期间出现。特别地,用于制灵的工作记忆的神经电路基质涉及DLPFC层3中的兴奋性金字塔神经元和特异性抑制γ-氨基丁酸神经元(即,含离子蛋白的篮子细胞)的协调活性。了解为从事工作记忆的正常发展与精神分裂症相关的改变之间的关系,该工作记忆可以为精神分裂症的性质提供新的见解作为神经发育障碍。因此,我们在本文中审查以下内容:1)精神分裂症中DLPFC层3电路的改变的最近发现,2)在精神分裂症的工作记忆变化出现和进展期间,该电路发生的发育改进, 3)各种不利的环境暴露可能有助于具有精神分裂症的个体中该电路的发育障碍。

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