神经科学
轴浆运输
再生(生物学)
生物
突触后电位
海马结构
轴突
生长锥
微流控
中枢神经系统
神经营养素
细胞生物学
纳米技术
材料科学
生物化学
受体
作者
Anne Marion Taylor,Mathew Blurton‐Jones,Seog Woo Rhee,David H. Cribbs,Carl W. Cotman,Noo Li Jeon
出处
期刊:Nature Methods
[Springer Nature]
日期:2005-07-21
卷期号:2 (8): 599-605
被引量:1076
摘要
Investigation of axonal biology in the central nervous system (CNS) is hindered by a lack of an appropriate in vitro method to probe axons independently from cell bodies. Here we describe a microfluidic culture platform that polarizes the growth of CNS axons into a fluidically isolated environment without the use of targeting neurotrophins. In addition to its compatibility with live cell imaging, the platform can be used to (i) isolate CNS axons without somata or dendrites, facilitating biochemical analyses of pure axonal fractions and (ii) localize physical and chemical treatments to axons or somata. We report the first evidence that presynaptic (Syp) but not postsynaptic (Camk2a) mRNA is localized to developing rat cortical and hippocampal axons. The platform also serves as a straightforward, reproducible method to model CNS axonal injury and regeneration. The results presented here demonstrate several experimental paradigms using the microfluidic platform, which can greatly facilitate future studies in axonal biology.
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