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利用诱导性 Neurogenin-2 人多能干细胞系高效制备 3D 生物打印功能感觉神经元。

Efficient fabrication of 3D bioprinted functional sensory neurons using an inducible Neurogenin-2 human pluripotent stem cell line.

机构信息

Illawarra Health and Medical Research Institute, University of Wollongong, Wollongong, NSW 2522, Australia.

School of Medical, Indigenous, and Health Sciences, Molecular Horizons, University of Wollongong, Wollongong, NSW 2522, Australia.

出版信息

Biofabrication. 2024 Aug 14;16(4). doi: 10.1088/1758-5090/ad69c4.

Abstract

Three-dimensional (3D) tissue models have gained recognition for their improved ability to mimic the native cell microenvironment compared to traditional two-dimensional models. This progress has been driven by advances in tissue-engineering technologies such as 3D bioprinting, a promising method for fabricating biomimetic living tissues. While bioprinting has succeeded in generating various tissues to date, creating neural tissue models remains challenging. In this context, we present an accelerated approach to fabricate 3D sensory neuron (SN) structures using a transgenic human pluripotent stem cell (hPSC)-line that contains an inducible Neurogenin-2 (NGN2) expression cassette. The NGN2 hPSC line was first differentiated to neural crest cell (NCC) progenitors, then incorporated into a cytocompatible gelatin methacryloyl-based bioink for 3D bioprinting. Upregulated NGN2 expression in the bioprinted NCCs resulted in induced SN (iSN) populations that exhibited specific cell markers, with 3D analysis revealing widespread neurite outgrowth through the scaffold volume. Calcium imaging demonstrated functional activity of iSNs, including membrane excitability properties and voltage-gated sodium channel (Na) activity. This efficient approach to generate 3D bioprinted iSN structures streamlines the development of neural tissue models, useful for the study of neurodevelopment and disease states and offering translational potential.

摘要

三维(3D)组织模型因其能够更好地模拟天然细胞微环境而受到认可,这一进步得益于组织工程技术的进步,例如 3D 生物打印,这是一种制造仿生活体组织的有前途的方法。尽管生物打印迄今为止已经成功制造了各种组织,但制造神经组织模型仍然具有挑战性。在这种情况下,我们提出了一种使用包含诱导性神经生成素 2(NGN2)表达盒的转基因人多能干细胞(hPSC)系加速制造 3D 感觉神经元(SN)结构的方法。首先将 NGN2 hPSC 系分化为神经嵴细胞(NCC)祖细胞,然后将其掺入细胞相容性的明胶甲基丙烯酰基基生物墨水用于 3D 生物打印。生物打印的 NCC 中 NGN2 的上调表达导致诱导的 SN(iSN)群体表现出特定的细胞标记,3D 分析显示广泛的轴突通过支架体积生长。钙成像显示 iSN 的功能活性,包括膜兴奋性特性和电压门控钠通道(Na)活性。这种生成 3D 生物打印 iSN 结构的高效方法简化了神经组织模型的开发,可用于研究神经发育和疾病状态,并具有转化潜力。

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