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Mechanisms of axonal injury: internodal nanocomplexes and calcium deregulation.

机译:轴突损伤的机制:节间纳米复合物和钙失调。

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Axonal degeneration causes morbidity in many neurological conditions including stroke, neurotrauma and multiple sclerosis. The limited ability of central nervous system (CNS) neurons to regenerate, combined with the observation that axonal damage causes clinical disability, has spurred efforts to investigate the mechanisms of axonal degeneration. Ca influx from outside the axon is a key mediator of injury. More recently, substantial pools of intra-axonal Ca sequestered in the 'axoplasmic reticulum' have been reported. These Ca stores are under the control of multimolecular 'nanocomplexes' located along the internodes under the myelin. The overactivation of these complexes during disease can lead to a lethal release of Ca from intra-axonal stores. Rich receptor pharmacology offers tantalizing therapeutic options targeting these nanocomplexes in the many diseases where axonal degeneration is prominent.
机译:轴突变性在许多神经系统疾病中引起发病,包括中风,神经创伤和多发性硬化。中枢神经系统(CNS)神经元的再生能力有限,加上轴突损伤导致临床残疾的观察结果,促使人们研究轴突变性的机制。来自轴突外部的Ca流入是损伤的关键介质。最近,已经报道了在“轴质网”中隔离的大量轴突内Ca。这些钙存储受髓鞘下方节间的多分子“纳米复合物”的控制。疾病期间这些复合物的过度活化可导致Ca从轴突内储存致死释放。丰富的受体药理学为轴突变性突出的许多疾病提供了针对这些纳米复合物的诱人治疗选择。

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