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Electrophysiological Profiles of Induced Neurons Converted Directly from Adult Human Fibroblasts Indicate Incomplete Neuronal Conversion

机译:从成年人类成纤维细胞直接转化的诱导神经元的电生理特征表明不完整的神经元转化。

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摘要

The direct conversion of human fibroblasts to neuronal cells, termed human induced neuronal (hiN) cells, has great potential for future clinical advances. However, previous studies have not provided an in-depth analysis of electrophysiological properties of adult fibroblast-derived hiN cultures. We have examined the electrophysiological profile of hiN cells by measuring passive and active membrane properties, as well as spontaneous and evoked neurotransmission. We found that hiN cells exhibited passive membrane properties equivalent to perinatal rodent neurons. In addition, 30% of hiN cells were incapable of action potential (AP) generation and did not exhibit rectifying membrane currents, and none of the cells displayed firing patterns of typical glutamatergic pyramidal neurons. Finally, hiN cells exhibited neither spontaneous nor evoked neurotransmission. Our results suggest that current methods used to produce hiN cells provide preparations in which cells do not achieve the cellular properties of fully mature neurons, rendering these cells inadequate to investigate pathophysiological mechanisms.
机译:将人类成纤维细胞直接转化为神经元细胞,称为人类诱导的神经元(hiN)细胞,对于未来的临床进展具有巨大的潜力。然而,先前的研究尚未提供对成年成纤维细胞来源的hiN培养物的电生理特性的深入分析。我们已经通过测量被动和主动膜特性以及​​自发和诱发的神经传递来检查了hiN细胞的电生理特性。我们发现,hiN细胞表现出等同于围产期啮齿动物神经元的被动膜特性。此外,有30%的hiN细胞无法产生动作电位(AP),并且不表现出整流膜电流,并且这些细胞均未显示出典型的谷氨酸能锥体神经元的放电模式。最后,hiN细胞既不表现出自发性也不诱发神经传递。我们的结果表明,目前用于生产hiN细胞的方法提供了制备方法,其中细胞无法实现完全成熟的神经元的细胞特性,从而使这些细胞不足以研究病理生理机制。

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