首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >The Culture of Primary Motor and Sensory Neurons in Defined Media on Electrospun Poly-L-lactide Nanofiber Scaffolds
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The Culture of Primary Motor and Sensory Neurons in Defined Media on Electrospun Poly-L-lactide Nanofiber Scaffolds

机译:在静电纺丝的聚-L-丙交酯纳米纤维支架上的限定培养基中原代运动和感觉神经元的培养。

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摘要

Electrospinning is a technique for producing micro- to nano-scale fibers. Fibers can be electrospun with varying degrees of alignment, from highly aligned to completely random. In addition, fibers can be spun from a variety of materials, including biodegradable polymers such as poly-L-lactic acid (PLLA). These characteristics make electrospun fibers suitable for a variety of scaffolding applications in tissue engineering. Our focus is on the use of aligned electrospun fibers for nerve regeneration. We have previously shown that aligned electrospun PLLA fibers direct the outgrowth of both primary sensory and motor neurons in vitro. We maintain that the use of a primary cell culture system is essential when evaluating biomaterials to model real neurons found in vivo as closely as possible. Here, we describe techniques used in our laboratory to electrospin fibrous scaffolds and culture dorsal root ganglia explants, as well as dissociated sensory and motor neurons, on electrospun scaffolds. However, the electrospinning and/or culture techniques presented here are easily adapted for use in other applications.
机译:电纺丝是用于生产微米至纳米级纤维的技术。可以对电纺丝进行不同程度的排列,从高度排列到完全随机。另外,纤维可以由多种材料纺成,包括可生物降解的聚合物,例如聚-L-乳酸(PLLA)。这些特性使电纺纤维适用于组织工程中的各种支架应用。我们的重点是将对齐的电纺纤维用于神经再生。先前我们已经证明,对齐的电纺PLLA纤维可指导体外主要感觉神经元和运动神经元的生长。我们认为,在评估生物材料以尽可能近地模拟体内发现的真实神经元时,必须使用原代细胞培养系统。在这里,我们描述了在实验室中用于静电纺丝纤维支架上的静电纺丝纤维支架和培养背根神经节外植体以及分离的感觉和运动神经元的技术。但是,此处介绍的静电纺丝和/或培养技术很容易适用于其他应用。

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