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Ion Channels as New Attractive Targets to Improve Re-Myelination Processes in the Brain

机译:离子渠道作为新的有吸引力的目标以改善大脑中的重新髓鞘过程

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摘要

Multiple sclerosis (MS) is the most demyelinating disease of the central nervous system (CNS) characterized by neuroinflammation. Oligodendrocyte progenitor cells (OPCs) are cycling cells in the developing and adult CNS that, under demyelinating conditions, migrate to the site of lesions and differentiate into mature oligodendrocytes to remyelinate damaged axons. However, this process fails during disease chronicization due to impaired OPC differentiation. Moreover, OPCs are crucial players in neuro-glial communication as they receive synaptic inputs from neurons and express ion channels and neurotransmitter/neuromodulator receptors that control their maturation. Ion channels are recognized as attractive therapeutic targets, and indeed ligand-gated and voltage-gated channels can both be found among the top five pharmaceutical target groups of FDA-approved agents. Their modulation ameliorates some of the symptoms of MS and improves the outcome of related animal models. However, the exact mechanism of action of ion-channel targeting compounds is often still unclear due to the wide expression of these channels on neurons, glia, and infiltrating immune cells. The present review summarizes recent findings in the field to get further insights into physio-pathophysiological processes and possible therapeutic mechanisms of drug actions.
机译:多发性硬化症(MS)是中枢神经系统(CNS)的最脱髓鞘疾病,其特征在于神经炎症。少突胶质细胞祖细胞(OPCs)是显影和成人CNS中的循环细胞,在脱髓鞘条件下,迁移到病变部位并分化成成熟的少突胶质细胞以重新填充损坏的轴突。然而,由于OPC差异受损,该过程在疾病中断期间失败。此外,OPCS是神经胶质通信中的重要球员,因为它们接受神经元的突触输入和表达离子通道和神经递质/神经调节剂受体来控制其成熟。离子通道被认为是有吸引力的治疗靶标,并且实际上可以在FDA批准的药剂的前五种药物靶组中找到具有确实的配体和电压门控通道。他们的调节改善了MS的一些症状,并改善了相关动物模型的结果。然而,由于这些通道在神经元,胶质细胞和浸润的免疫细胞上的宽表达,离子通道靶向化合物的确切作用机制通常仍然不明确。本综述总结了该领域最近的发现,以进一步了解生理病理生理程序和药物行为的可能治疗机制。

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