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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >High tolerance and delayed elastic response of cultured axons to dynamic stretch injury.
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High tolerance and delayed elastic response of cultured axons to dynamic stretch injury.

机译:培养的轴突对动态拉伸损伤的高耐受性和延迟的弹性反应。

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摘要

Although axonal injury is a common feature of brain trauma, little is known of the immediate morphological responses of individual axons to mechanical injury. Here, we developed an in vitro model system that selectively stretches axons bridging two populations of human neurons derived from the cell line N-Tera2. We found that these axons demonstrated a remarkably high tolerance to dynamic stretch injury, with no primary axotomy at strains <65%. In addition, the axolemma remained impermeable to small molecules after injury unless axotomy had occurred. We also found that injured axons exhibited the behavior of "delayed elasticity" after injury, going from a straight orientation before injury to developing an undulating course as an immediate response to injury, yet gradually recovering their original orientation. Surprisingly, some portions of the axons were found to be up to 60% longer immediately after injury. Subsequent to returning to their original length, injured axons developed swellings of appearance remarkably similar to that found in brain-injured humans. These findings may offer insight into mechanical-loading conditions leading to traumatic axonal injury and into potential mechanisms of axon reassembly after brain trauma.
机译:尽管轴突损伤是脑外伤的常见特征,但对单个轴突对机械损伤的即时形态学反应知之甚少。在这里,我们开发了一种体外模型系统,该系统选择性地拉伸轴突,桥接了两个源自细胞系N-Tera2的人类神经元。我们发现这些轴突显示出对动态拉伸损伤的极高耐受性,在<65%的菌株中没有进行原发性轴索切开术。此外,除非进行了轴切术,否则在损伤后,轴突仍然不能渗透小分子。我们还发现,受伤的轴突在受伤后表现出“延迟弹性”的行为,从受伤前的笔直方向发展为对受伤的即时反应起伏的过程,但逐渐恢复了原来的方向。出乎意料的是,发现受伤后立即将轴突的某些部分延长了多达60%。在恢复其原始长度后,受伤的轴突出现了外观上的肿胀,与在脑部受伤的人身上发现的肿胀非常相似。这些发现可能提供洞察力导致轴突损伤的机械负荷条件和脑外伤后轴突重组的潜在机制。

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