首页> 外文期刊>Scientific reports. >Electrical Stimulation Using Conductive Polymer Polypyrrole Counters Reduced Neurite Outgrowth of Primary Prefrontal Cortical Neurons from NRG1-KO and DISC1-LI Mice
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Electrical Stimulation Using Conductive Polymer Polypyrrole Counters Reduced Neurite Outgrowth of Primary Prefrontal Cortical Neurons from NRG1-KO and DISC1-LI Mice

机译:使用导电聚合物聚吡咯计数器的电刺激从NRG1-KO和DISC1-LI小鼠中减少了原发性前额叶皮质神经元的神经突生长

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Deficits in neurite outgrowth, possibly involving dysregulation of risk genes neuregulin-1 (NRG1) and disrupted in schizophrenia 1 (DISC1) have been implicated in psychiatric disorders including schizophrenia. Electrical stimulation using conductive polymers has been shown to stimulate neurite outgrowth of differentiating human neural stem cells. This study investigated the use of the electroactive conductive polymer polypyrrole (Ppy) to counter impaired neurite outgrowth of primary pre-frontal cortical (PFC) neurons from NRG1-knock out (NRG1-KO) and DISC1-locus impairment (DISC1-LI) mice. Whereas NRG1-KO and DISC1-LI exhibited reduced neurite length and number of neurite branches compared to wild-type controls, this was not apparent for cultures on electroactive Ppy. Additionally, the use of the Ppy substrate normalised the synaptophysin and PSD95 protein and mRNA expression whereas both are usually reduced by NRG1-KO or DISC1-LI. Our findings support the utility of Ppy mediated electrical stimulation to prevent the reduction of neurite outgrowth and related synaptic protein expression in the primary PFC neurons from NRG1-KO and DISC1-LI mice, providing proof-of-concept for treating neurodevelopmental diseases including schizophrenia.
机译:神经沸石过度的缺陷,可能涉及风险基因的失调Neuregulin-1(NRG1)并在精神分裂症1(DICK1)中破坏(DICK1)涉及包括精神分裂症的精神病疾病。已经示出了使用导电聚合物的电刺激刺激分化人类神经干细胞的神经突生长。本研究研究了电活性导电聚合物聚吡咯(PPY)对NRG1敲除(NRG1-KO)和Disc1-Locus损伤(Disc1-Li)小鼠(Disc1-Li)小鼠(Disc1-Li)小鼠(Disc1-Li)小鼠(Disc1-Li)小鼠(Disc1-Li)小鼠(Disc1-Li)小鼠)的使用来对抗神经突卵泡的损伤。与野生型对照相比,NRG1-KO和DICK1-LI表现出无神经突长度和神经突支数的数量,对于电活性PPY的培养并不明显。另外,使用PPY衬底标准化突触蛋白和PSD95蛋白和mRNA表达,而两者通常通过NRG1-KO或DISC1-LI降低。我们的研究结果支持PPY介导的电刺激,以防止来自NRG1-KO和Disc1-Li小鼠的初级PFC神经元中的神经沸石过度和相关突触蛋白表达的效用,为治疗包括精神分裂症,包括精神分裂症的神经发育疾病的概念证明。

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