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使用磁性细胞分离技术分离小鼠出生后脑小胶质细胞以进行表型特征分析。

Isolation of murine postnatal brain microglia for phenotypic characterization using magnetic cell separation technology.

作者信息

Harms Ashley S, Tansey Malú G

机构信息

Emory University School of Medicine, Atlanta, GA, USA.

出版信息

Methods Mol Biol. 2013;1041:33-9. doi: 10.1007/978-1-62703-520-0_5.

Abstract

To shorten the time between brain harvesting and microglia isolation, and characterization, we utilized the MACS(®) neural dissociation kit followed by OctoMACS(®) CD11b magnetic bead isolation technique to positively select for brain microglia expressing the pan-microglial marker CD11b, a key subunit of the membrane attack complex (MAC). This protocol yields a viable and highly pure (>95%) microglial population of approximately 500,000 cells per pup that is amenable for in vitro characterization within hours or days after being harvested from brain tissue. Primary microglia from C57Bl/6 mice were plated for next-day analyses of morphology and cellular markers by immunocytochemistry or for analysis of gene expression under resting or LPS-stimulated conditions. The ease of isolation enables investigators to perform molecular and cellular analyses without having to wait 1-2 weeks to isolate microglia by conventional methods involving mechanical agitation to dislodge these from astrocyte beds.

摘要

为了缩短从获取脑组织到分离、鉴定小胶质细胞之间的时间,我们使用了MACS(®)神经解离试剂盒,随后采用OctoMACS(®) CD11b磁珠分离技术,以阳性选择表达全小胶质细胞标志物CD11b(膜攻击复合物(MAC)的关键亚基)的脑小胶质细胞。该方案可产生每只幼崽约500,000个细胞的有活力且高度纯化(>95%)的小胶质细胞群体,这些细胞在从脑组织中获取后的数小时或数天内适合进行体外鉴定。将来自C57Bl/6小鼠的原代小胶质细胞铺板,以便次日通过免疫细胞化学分析形态和细胞标志物,或分析静息或脂多糖刺激条件下的基因表达。这种简便的分离方法使研究人员能够进行分子和细胞分析,而无需像通过涉及机械搅拌以将小胶质细胞从星形胶质细胞层中分离出来的传统方法那样等待1-2周来分离小胶质细胞。

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