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使用正常和胶质瘤来源的神经干细胞系对特定化学文库进行高内涵筛选。

High content screening of defined chemical libraries using normal and glioma-derived neural stem cell lines.

作者信息

Danovi Davide, Folarin Amos A, Baranowski Bart, Pollard Steven M

机构信息

Department of Cancer Biology, UCL Cancer Institute, University College London, London, United Kingdom.

出版信息

Methods Enzymol. 2012;506:311-29. doi: 10.1016/B978-0-12-391856-7.00040-8.

Abstract

Small molecules with potent biological effects on the fate of normal and cancer-derived stem cells represent both useful research tools and new drug leads for regenerative medicine and oncology. Long-term expansion of mouse and human neural stem cells is possible using adherent monolayer culture. These cultures represent a useful cellular resource to carry out image-based high content screening of small chemical libraries. Improvements in automated microscopy, desktop computational power, and freely available image processing tools, now means that such chemical screens are realistic to undertake in individual academic laboratories. Here we outline a cost effective and versatile time lapse imaging strategy suitable for chemical screening. Protocols are described for the handling and screening of human fetal Neural Stem (NS) cell lines and their malignant counterparts, Glioblastoma-derived neural stem cells (GNS). We focus on identification of cytostatic and cytotoxic "hits" and discuss future possibilities and challenges for extending this approach to assay lineage commitment and differentiation.

摘要

对正常和癌症来源的干细胞命运具有强大生物学效应的小分子,既是再生医学和肿瘤学有用的研究工具,也是新的药物先导物。使用贴壁单层培养可以长期扩增小鼠和人类神经干细胞。这些培养物是对小型化学文库进行基于图像的高内涵筛选的有用细胞资源。自动显微镜技术、桌面计算能力和免费可用的图像处理工具的改进,现在意味着在单个学术实验室进行此类化学筛选是切实可行的。在这里,我们概述了一种适用于化学筛选的经济高效且通用的延时成像策略。描述了处理和筛选人胎儿神经干细胞(NS)系及其恶性对应物胶质母细胞瘤来源的神经干细胞(GNS)的方案。我们专注于鉴定细胞生长抑制和细胞毒性“命中”化合物,并讨论将这种方法扩展到检测谱系定向和分化的未来可能性与挑战。

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