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强制细胞周期退出以及对GABAA、CREB和GSK3β信号的调节促进诱导多能干细胞衍生神经元的功能成熟。

Forced cell cycle exit and modulation of GABAA, CREB, and GSK3β signaling promote functional maturation of induced pluripotent stem cell-derived neurons.

作者信息

Telezhkin Vsevolod, Schnell Christian, Yarova Polina, Yung Sun, Cope Emma, Hughes Alis, Thompson Belinda A, Sanders Philip, Geater Charlene, Hancock Jane M, Joy Shona, Badder Luned, Connor-Robson Natalie, Comella Andrea, Straccia Marco, Bombau Georgina, Brown Jon T, Canals Josep M, Randall Andrew D, Allen Nicholas D, Kemp Paul J

机构信息

School of Biosciences, Cardiff University, Cardiff, United Kingdom;

Department of Cell Biology, Immunology and Neuroscience, Faculty of Medicine, IDIBAPS, University of Barcelona, Barcelona, Spain; Centro de Investigación Biomédica en Red sobre Enfermedades Neurodegenerativas (CIBERNED), Barcelona, Spain;

出版信息

Am J Physiol Cell Physiol. 2016 Apr 1;310(7):C520-41. doi: 10.1152/ajpcell.00166.2015. Epub 2015 Dec 30.

DOI:10.1152/ajpcell.00166.2015
PMID:26718628
Abstract

Although numerous protocols have been developed for differentiation of neurons from a variety of pluripotent stem cells, most have concentrated on being able to specify effectively appropriate neuronal subtypes and few have been designed to enhance or accelerate functional maturity. Of those that have, most employ time courses of functional maturation that are rather protracted, and none have fully characterized all aspects of neuronal function, from spontaneous action potential generation through to postsynaptic receptor maturation. Here, we describe a simple protocol that employs the sequential addition of just two supplemented media that have been formulated to separate the two key phases of neural differentiation, the neurogenesis and synaptogenesis, each characterized by different signaling requirements. Employing these media, this new protocol synchronized neurogenesis and enhanced the rate of maturation of pluripotent stem cell-derived neural precursors. Neurons differentiated using this protocol exhibited large cell capacitance with relatively hyperpolarized resting membrane potentials; moreover, they exhibited augmented: 1) spontaneous electrical activity; 2) regenerative induced action potential train activity; 3) Na(+) current availability, and 4) synaptic currents. This was accomplished by rapid and uniform development of a mature, inhibitory GABAAreceptor phenotype that was demonstrated by Ca(2+) imaging and the ability of GABAAreceptor blockers to evoke seizurogenic network activity in multielectrode array recordings. Furthermore, since this protocol can exploit expanded and frozen prepatterned neural progenitors to deliver mature neurons within 21 days, it is both scalable and transferable to high-throughput platforms for the use in functional screens.

摘要

尽管已经开发出许多方案用于从多种多能干细胞分化出神经元,但大多数方案都集中在能够有效地指定合适的神经元亚型,很少有方案旨在增强或加速功能成熟。在那些有相关设计的方案中,大多数采用的功能成熟时间进程相当漫长,而且没有一个方案全面表征了神经元功能的所有方面,从自发动作电位的产生到突触后受体的成熟。在此,我们描述了一种简单的方案,该方案通过依次添加仅两种经过补充的培养基来实现,这两种培养基的配方旨在分离神经分化的两个关键阶段,即神经发生和突触发生,每个阶段具有不同的信号需求。采用这些培养基,这个新方案使神经发生同步,并提高了多能干细胞衍生的神经前体细胞的成熟速度。使用该方案分化出的神经元表现出较大的细胞电容和相对超极化的静息膜电位;此外,它们还表现出增强的:1)自发电活动;2)再生诱导动作电位串活动;3)Na(+)电流可用性,以及4)突触电流。这是通过快速且均匀地发育成熟的抑制性GABAA受体表型来实现的,这通过Ca(2+)成像以及GABAA受体阻滞剂在多电极阵列记录中诱发致痫性网络活动的能力得到了证明。此外,由于该方案可以利用扩增和冷冻的预模式化神经祖细胞在21天内产生成熟神经元,因此它既具有可扩展性,又可转移到高通量平台用于功能筛选。

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