首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Measurement of Tension Release During Laser Induced Axon Lesion to Evaluate Axonal Adhesion to the Substrate at Piconewton and Millisecond Resolution
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Measurement of Tension Release During Laser Induced Axon Lesion to Evaluate Axonal Adhesion to the Substrate at Piconewton and Millisecond Resolution

机译:在皮克牛顿和毫秒分辨率下测量激光诱导的轴突病变过程中的张力释放以评估轴突对基底的粘附力

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摘要

The formation of functional connections in a developing neuronal network is influenced by extrinsic cues. The neurite growth of developing neurons is subject to chemical and mechanical signals, and the mechanisms by which it senses and responds to mechanical signals are poorly understood. Elucidating the role of forces in cell maturation will enable the design of scaffolds that can promote cell adhesion and cytoskeletal coupling to the substrate, and therefore improve the capacity of different neuronal types to regenerate after injury.Here, we describe a method to apply simultaneous force spectroscopy measurements during laser induced cell lesion. We measure tension release in the partially lesioned axon by simultaneous interferometric tracking of an optically trapped probe adhered to the membrane of the axon. Our experimental protocol detects the tension release with piconewton sensitivity, and the dynamic of the tension release at millisecond time resolution. Therefore, it offers a high-resolution method to study how the mechanical coupling between cells and substrates can be modulated by pharmacological treatment and/or by distinct mechanical properties of the substrate.
机译:发育中的神经元网络中功能连接的形成受到外部信号的影响。发育中的神经元的神经突生长受化学和机械信号的影响,人们对它感测和响应机械信号的机理了解甚少。阐明力在细胞成熟中的作用将使支架的设计能够促进细胞粘附和细胞骨架与基质的结合,从而提高损伤后不同神经元类型的再生能力。在此,我们描述了一种同时施加力的方法激光诱导细胞病变期间的光谱测量。我们通过粘附在轴突膜上的光学捕获探针的同时干涉跟踪来测量部分病变轴突中的张力释放。我们的实验规程以微微网灵敏度检测张力释放,并在毫秒时间分辨率下检测张力释放的动态。因此,它提供了一种高分辨率方法来研究如何通过药理处理和/或通过底物的独特机械性能来调节细胞与底物之间的机械偶联。

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