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开发一种完全基于人源的检测方法,该方法将诱导多能干细胞衍生的星形胶质细胞与诱导多能干细胞来源的神经元共培养,适用于电生理研究。

Development of a fully human assay combining NGN2-inducible neurons co-cultured with iPSC-derived astrocytes amenable for electrophysiological studies.

机构信息

Janssen Pharmaceutica NV, Turnhoutseweg 30, 2340 Beerse, Belgium.

Bioneer S/A, Kogle Allé 2, 2970 Hørsholm, Denmark.

出版信息

Stem Cell Res. 2021 Jul;54:102386. doi: 10.1016/j.scr.2021.102386. Epub 2021 May 24.

Abstract

Neurogenin 2 encodes a neural-specific transcription factor (NGN2) able to drive neuronal fate on somatic and stem cells. NGN2 is expressed in neural progenitors within the developing central and peripheral nervous systems. Overexpression of NGN2 in human induced pluripotent stem cells (hiPSCs) or human embryonic stem cells has been shown to efficiently trigger conversion to neurons. Here we describe two gene-edited hiPSC lines harbouring a doxycycline (DOX)-inducible cassette in the AAVS1 locus driving expression of NGN2 (BIONi010-C-13) or NGN2-T2A-GFP (BIONi010-C-15). By introducing NGN2-expressing cassette, we reduce variability associated with conventional over-expression methods such as viral transduction, making these lines amenable for scale-up production and screening processes. DOX-treated hiPSCs convert to neural phenotype within one week and display the expression of structural neuronal markers such as Beta-III tubulin and tau. We performed functional characterization of NGN2-neurons co-cultured with hiPSC-derived astrocytes in a "fully-humanized" set up. Passive properties of NGN2-neurons were indistinguishable from mouse primary cells while displaying variable activity in extracellular recordings performed in multi-electrode arrays (MEAs). We demonstrate that hiPSC-derived astrocytes and neurons can be co-cultured and display functional properties comparable to the gold standard used in electrophysiology. Both lines are globally available via EBiSC repository at https://cells.ebisc.org/.

摘要

神经基因 2 编码一种神经特异性转录因子(NGN2),能够在体细胞和干细胞上驱动神经元命运。NGN2 在发育中的中枢和周围神经系统中的神经祖细胞中表达。在人诱导多能干细胞(hiPSC)或人胚胎干细胞中过表达 NGN2 已被证明能有效地触发向神经元的转化。在这里,我们描述了两条基因编辑的 hiPSC 系,它们在 AAVS1 基因座中携带一个由强力霉素(DOX)诱导的盒,驱动 NGN2 的表达(BIONi010-C-13)或 NGN2-T2A-GFP(BIONi010-C-15)。通过引入表达 NGN2 的盒,我们减少了与传统过表达方法(如病毒转导)相关的变异性,使这些系适合大规模生产和筛选过程。用 DOX 处理的 hiPSC 在一周内转化为神经表型,并显示出结构神经元标志物如 Beta-III 微管蛋白和 tau 的表达。我们在“全人化”设置中对与 hiPSC 衍生的星形胶质细胞共培养的 NGN2 神经元进行了功能表征。NGN2 神经元的被动特性与小鼠原代细胞无法区分,而在多电极阵列(MEA)中进行的细胞外记录中显示出可变的活性。我们证明 hiPSC 衍生的星形胶质细胞和神经元可以共培养,并显示出与电生理学中使用的金标准相当的功能特性。这两条线都可以通过 EBiSC 存储库在 https://cells.ebisc.org/ 全球获得。

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