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Mechanisms of neuronal damage in multiple sclerosis and its animal models: role of calcium pumps and exchangers

机译:多发性硬化中神经元损伤的机制及其动物模型:钙泵和交换剂的作用

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摘要

Multiple sclerosis is an inflammatory, demyelinating and neurodegenerative disorder of the central nervous system. Increasing evidence indicates that neuronal pathology and axonal injury are early hallmarks of multiple sclerosis and are major contributors to progressive and permanent disability. Yet, the mechanisms underlying neuronal dysfunction and damage are not well defined. Elucidation of such mechanisms is of critical importance for the development of therapeutic strategies that will prevent neurodegeneration and confer neuroprotection. PMCA2 (plasma-membrane Ca2+-ATPase 2) and the NCX (Na+/Ca2+ exchanger) have been implicated in impairment of axonal and neuronal function in multiple sclerosis and its animal models. As PMCA2 and NCX play critical roles in calcium extrusion in cells, alterations in their expression or activity may affect calcium homoeostasis and thereby induce intracellular injury mechanisms. Interventions that restore normal PMCA2 and NCX activity may prevent or slow disease progression by averting neurodegeneration.
机译:多发性硬化症是中枢神经系统的炎性,脱髓鞘和神经退行性疾病。越来越多的证据表明,神经元病理学和轴突损伤是多发性硬化症的早期标志,并且是进行性和永久性残疾的主要因素。然而,神经元功能障碍和损伤的潜在机制尚不清楚。阐明这种机制对于开发可预防神经变性并赋予神经保护作用的治疗策略至关重要。 PMCA2(血浆膜Ca 2 + -ATPase 2)和NCX(Na + / Ca 2 + 交换子)与损伤有关。多发性硬化的轴突和神经元功能及其动物模型的研究由于PMCA2和NCX在细胞中钙的挤出中起关键作用,因此它们表达或活性的改变可能影响钙的稳态,从而诱导细胞内损伤机制。恢复正常PMCA2和NCX活性的干预措施可通过避免神经退行性变来预防或减慢疾病的进展。

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