首页> 外文期刊>Translational psychiatry. >Synaptic deficits in iPSC-derived cortical interneurons in schizophrenia are mediated by NLGN2 and rescued by N-acetylcysteine
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Synaptic deficits in iPSC-derived cortical interneurons in schizophrenia are mediated by NLGN2 and rescued by N-acetylcysteine

机译:精神分裂症中的IPSC衍生皮质型术中的突触缺陷由NLGN2介导并通过N-乙酰半胱氨酸救出

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Human postmortem studies suggest a major role for abnormalities in GABAergic interneurons in the prefrontal cortex in schizophrenia. Cortical interneurons differentiated from induced pluripotent stem cells (iPSCs) of schizophrenia subjects showed significantly lower levels of glutamate decarboxylase 67 (GAD67), replicating findings from multiple postmortem studies, as well as reduced levels of synaptic proteins gehpyrin and NLGN2. Co-cultures of the interneurons with excitatory cortical pyramidal neurons from schizophrenia iPSCs showed reduced synaptic puncta density and lower action potential frequency. NLGN2 overexpression in schizophrenia neurons rescued synaptic puncta deficits while NLGN2 knockdown in healthy neurons resulted in reduced synaptic puncta density. Schizophrenia interneurons also had significantly smaller nuclear area, suggesting an innate oxidative stressed state. The antioxidant N-acetylcysteine increased the nuclear area in schizophrenia interneurons, increased NLGN2 expression and rescued synaptic deficits. These results implicate specific deficiencies in the synaptic machinery in cortical interneurons as critical regulators of synaptic connections in schizophrenia and point to a nexus between oxidative stress and NLGN2 expression in mediating synaptic deficits in schizophrenia.
机译:人工后期研究表明精神分裂症前额叶皮质中加筋性型细胞间异常的主要作用。精神分裂症受试者的诱导多能干细胞(IPSCS)的皮质型细胞核算显示出显着较低水平的谷氨酸脱羧酶67(GAD67),从多个后模拟研究中复制结果,以及降低的突触蛋白Gehpylin和NLGN2。来自精神分裂症IPSC的兴奋性皮质锥体神经元的共性培养物表现出突触斑块密度降低和较低的动作电位频率。在精神分裂症神经元中的NLGN2过表达救出了突触斑点缺陷,而NLGN2在健康神经元的NLGN2敲低导致Synaptic Puncta密度降低。精神分裂症中型核面积也具有明显较小的核领域,建议先天氧化应激状态。抗氧化剂N-乙酰半胱氨酸增加了精神分裂症中间核的核面积,增加了NLGN2表达和救出突触缺陷。这些结果暗示皮质中间核心中突触机制中的特定缺陷作为精神分裂症中突触胁迫下的突触结合的临界调节因子,并指向氧化应激与NLGN2表达中介导精神分裂症中的突触缺陷。

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