Production of dissociated sensory neuron cultures and considerations for their use in studying neuronal function and plasticity

IF 16 1区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Sacha A Malin, Brian M Davis, Derek C Molliver
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引用次数: 376

Abstract

Dissociated primary sensory neurons are commonly used to study growth factor–dependent cell survival, axon outgrowth, differentiation and basic mechanisms of sensory physiology and pain. Spinal or trigeminal sensory neurons can be collected from embryos, neonates or adults, treated with enzymes that degrade the extracellular matrix, triturated and grown in defined media with or without growth factors and additional animal sera. Production of cultures can take as little as 2.5 h. Cells can be used almost immediately or maintained for as long as 1 month. Ease of production and the ability to control growth conditions make sensory neuron culture a powerful model system for studying basic neurobiology of central and peripheral nervous systems.

Abstract Image

离体感觉神经元培养物的制作及其用于研究神经元功能和可塑性的考虑因素
分离的初级感觉神经元通常用于研究生长因子依赖性细胞存活、轴突生长、分化以及感觉生理学和疼痛的基本机制。脊髓或三叉神经感觉神经元可从胚胎、新生儿或成年人身上采集,用降解细胞外基质的酶处理后,在含有或不含有生长因子和额外动物血清的特定培养基中进行三层培养和生长。细胞几乎可以立即使用,也可保存 1 个月之久。生产的简易性和控制生长条件的能力使感觉神经元培养成为研究中枢和周围神经系统基础神经生物学的强大模型系统。
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来源期刊
Nature Protocols
Nature Protocols 生物-生化研究方法
CiteScore
29.10
自引率
0.70%
发文量
128
审稿时长
4 months
期刊介绍: Nature Protocols focuses on publishing protocols used to address significant biological and biomedical science research questions, including methods grounded in physics and chemistry with practical applications to biological problems. The journal caters to a primary audience of research scientists and, as such, exclusively publishes protocols with research applications. Protocols primarily aimed at influencing patient management and treatment decisions are not featured. The specific techniques covered encompass a wide range, including but not limited to: Biochemistry, Cell biology, Cell culture, Chemical modification, Computational biology, Developmental biology, Epigenomics, Genetic analysis, Genetic modification, Genomics, Imaging, Immunology, Isolation, purification, and separation, Lipidomics, Metabolomics, Microbiology, Model organisms, Nanotechnology, Neuroscience, Nucleic-acid-based molecular biology, Pharmacology, Plant biology, Protein analysis, Proteomics, Spectroscopy, Structural biology, Synthetic chemistry, Tissue culture, Toxicology, and Virology.
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