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从新生小鼠海马体和皮层中培养锥体神经元。

Culturing pyramidal neurons from the early postnatal mouse hippocampus and cortex.

机构信息

Department of Physiology, University of California-San Francisco (UCSF), San Francisco, California, USA.

出版信息

Nat Protoc. 2012 Sep;7(9):1741-54. doi: 10.1038/nprot.2012.099. Epub 2012 Aug 30.

Abstract

The ability to culture and maintain postnatal mouse hippocampal and cortical neurons is highly advantageous, particularly for studies on genetically engineered mouse models. Here we present a protocol to isolate and culture pyramidal neurons from the early postnatal (P0-P1) mouse hippocampus and cortex. These low-density dissociated cultures are grown on poly-L-lysine-coated glass substrates without feeder layers. Cultured neurons survive well, develop extensive axonal and dendritic arbors, express neuronal and synaptic markers, and form functional synaptic connections. Further, they are highly amenable to low- and high-efficiency transfection and time-lapse imaging. This optimized cell culture technique can be used to culture and maintain neurons for a variety of applications including immunocytochemistry, biochemical studies, shRNA-mediated knockdown and live imaging studies. The preparation of the glass substrate must begin 5 d before the culture. The dissection and plating out of neurons takes 3-4 h and neurons can be maintained in culture for up to 4 weeks.

摘要

培养和维持新生小鼠海马体和皮质神经元的能力具有很大的优势,特别是对于基因工程小鼠模型的研究。本文提供了一种从新生(P0-P1)期小鼠海马体和皮质中分离和培养锥体神经元的方案。这些低细胞密度的分离培养物在未经饲养层的多聚左旋赖氨酸包被的玻璃底物上生长。培养的神经元存活良好,形成广泛的轴突和树突分支,表达神经元和突触标记物,并形成功能性的突触连接。此外,它们非常适合进行低效率和高效率的转染和延时成像。这种优化的细胞培养技术可用于培养和维持各种应用的神经元,包括免疫细胞化学、生化研究、shRNA 介导的敲低和活细胞成像研究。玻璃底物的制备必须在培养前 5 天开始。神经元的解剖和接种需要 3-4 小时,神经元可以在培养中维持长达 4 周。

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