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Large-scale generation of human iPSC-derived neural stem cells/early neural progenitor cells and their neuronal differentiation

机译:人iPSC衍生的神经干细胞/早期神经祖细胞的大规模产生及其神经元分化

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摘要

Induced pluripotent stem cell (iPSC)-based technologies offer an unprecedented opportunity to perform high-throughput screening of novel drugs for neurological and neurodegenerative diseases. Such screenings require a robust and scalable method for generating large numbers of mature, differentiated neuronal cells. Currently available methods based on differentiation of embryoid bodies (EBs) or directed differentiation of adherent culture systems are either expensive or are not scalable. We developed a protocol for large-scale generation of neuronal stem cells (NSCs)/early neural progenitor cells (eNPCs) and their differentiation into neurons. Our scalable protocol allows robust and cost-effective generation of NSCs/eNPCs from iPSCs. Following culture in neurobasal medium supplemented with B27 and BDNF, NSCs/eNPCs differentiate predominantly into vesicular glutamate transporter 1 (VGLUT1) positive neurons. Targeted mass spectrometry analysis demonstrates that iPSC-derived neurons express ligand-gated channels and other synaptic proteins and whole-cell patch-clamp experiments indicate that these channels are functional. The robust and cost-effective differentiation protocol described here for large-scale generation of NSCs/eNPCs and their differentiation into neurons paves the way for automated high-throughput screening of drugs for neurological and neurodegenerative diseases.
机译:基于诱导多能干细胞(iPSC)的技术为进行神经系统疾病和神经退行性疾病的新药的高通量筛选提供了前所未有的机会。这样的筛选需要用于产生大量成熟的,分化的神经元细胞的鲁棒且可扩展的方法。基于胚状体(EB)分化或贴壁培养系统定向分化的当前可用方法要么昂贵,要么无法扩展。我们开发了用于大规模生成神经元干细胞(NSC)/早期神经祖细胞(eNPC)及其分化为神经元的协议。我们可扩展的协议允许从iPSC生成健壮且具有成本效益的NSC / eNPC。在补充了B27和BDNF的神经基础培养基中培养后,NSC / eNPC主要分化为囊泡谷氨酸转运蛋白1(VGLUT1)阳性神经元。靶向质谱分析表明,iPSC衍生的神经元表达配体门控通道和其他突触蛋白,全细胞膜片钳实验表明这些通道具有功能。这里描述的用于大规模生成NSCs / eNPC及其分化为神经元的功能强大且具有成本效益的分化方案为神经性和神经退行性疾病药物的自动高通量筛选铺平了道路。

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