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高内涵成像应用中的人源神经元和神经祖细胞

Human-Derived Neurons and Neural Progenitor Cells in High Content Imaging Applications.

作者信息

Harrill Joshua A

机构信息

Center for Toxicology and Environmental Health, LLC, 5120 Northshore Drive, Little Rock, AR, 72118, USA.

出版信息

Methods Mol Biol. 2018;1683:305-338. doi: 10.1007/978-1-4939-7357-6_18.

DOI:10.1007/978-1-4939-7357-6_18
PMID:29082500
Abstract

Due to advances in the fields of stem cell biology and cellular engineering, a variety of commercially available human-derived neurons and neural progenitor cells (NPCs) are now available for use in research applications, including small molecule efficacy or toxicity screening. The use of human-derived neural cells is anticipated to address some of the uncertainties associated with the use of nonhuman culture models or transformed cell lines derived from human tissues. Many of the human-derived neurons and NPCs currently available from commercial sources recapitulate critical process of nervous system development including NPC proliferation, neurite outgrowth, synaptogenesis, and calcium signaling, each of which can be evaluated using high content image analysis (HCA). Human-derived neurons and NPCs are also amenable to culture in multiwell plate formats and thus may be adapted for use in HCA-based screening applications. This article reviews various types of HCA-based assays that have been used in conjunction with human-derived neurons and NPC cultures. This article also highlights instances where lower throughput analysis of neurodevelopmental processes has been performed and which demonstrate a potential for adaptation to higher-throughout imaging methods. Finally, a generic protocol for evaluating neurite outgrowth in human-derived neurons using a combination of immunocytochemistry and HCA is presented. The information provided in this article is intended to serve as a resource for cell model and assay selection for those interested in evaluating neurodevelopmental processes in human-derived cells.

摘要

由于干细胞生物学和细胞工程领域的进展,现在有多种市售的人源神经元和神经祖细胞(NPC)可用于研究应用,包括小分子功效或毒性筛选。预计使用人源神经细胞将解决与使用非人类培养模型或源自人类组织的转化细胞系相关的一些不确定性。目前从商业来源获得的许多人源神经元和NPC概括了神经系统发育的关键过程,包括NPC增殖、神经突生长、突触形成和钙信号传导,每一个过程都可以使用高内涵图像分析(HCA)进行评估。人源神经元和NPC也适合在多孔板形式中培养,因此可能适用于基于HCA的筛选应用。本文综述了与使用人源神经元和NPC培养物结合使用的各种基于HCA的检测方法。本文还强调了对神经发育过程进行较低通量分析的实例,这些实例表明了适应更高通量成像方法的潜力。最后,给出了一种使用免疫细胞化学和HCA相结合的方法评估人源神经元中神经突生长的通用方案。本文提供的信息旨在为那些有兴趣评估人源细胞中神经发育过程的人提供细胞模型和检测方法选择的资源。

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