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Touch-induced Mechanical Strain in Somatosensory Neurons is Independent of Extracellular Matrix Mutations in C. elegans

机译:触摸诱导的躯体感觉神经元的机械菌株与C.秀丽隐杆线的细胞外基质突变无关

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Cutaneous mechanosensory neurons are activated by mechanical loads applied to the skin, and these stimuli are proposed to generate mechanical strain within sensory neurons. Using a microfluidic device to deliver controlled stimuli to intact animals and large, immobile, and fluorescent protein-tagged mitochondria as fiducial markers in the touch receptor neurons (TRNs), we visualized and measured touch-induced mechanical strain in C. elegans worms. At steady-state, touch stimuli sufficient to activate TRNs induce an average strain of 3.1% at the center of the actuator and this strain decays to near zero at the edges of the actuator. We also measured strain in animals carrying mutations affecting links between the extracellular matrix (ECM) and the TRNs but could not detect any differences in touch-induced mechanical strain between wild-type and mutant animals. Collectively, these results demonstrate that touching the skin induces local mechanical strain in intact animals and suggest that a fully intact ECM is not essential for transmitting mechanical strain from the skin to cutaneous mechanosensory neurons.
机译:皮肤机械感觉神经元通过施加到皮肤的机械载荷而激活,并且提出这些刺激以在感觉神经元内产生机械菌株。使用微流体装置可将受控刺激递送到完整的动物和大,固定和荧光蛋白标记的线粒体作为触摸受体神经元(TRNS)中的基准标记,我们在C.杆状杆菌中可视化和测量触摸机械菌株。在稳态,足以激活TRN的触摸刺激诱导致动器中心在致动器的中心处的平均应变,并且该应变在致动器的边缘处衰减到零附近。我们还测量携带影响细胞外基质(ECM)和TRNS之间的链路的突变的动物的菌株,但不能检测野生型和突变动物之间的触摸机械应变的任何差异。总的来说,这些结果表明,触摸皮肤在完整的动物中诱导局部机械菌株,并表明完全完整的ECM对于从皮肤到皮肤机械静脉神经元的机械菌株是必不可少的。

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