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Protective Effects of Melatonin on Neurogenesis Impairment in Neurological Disorders and Its Relevant Molecular Mechanisms

机译:褪黑素对神经障碍神经发生损伤及其相关分子机制的保护作用及其相关分子机制

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摘要

Neurogenesis is the process by which functional new neurons are generated from the neural stem cells (NSCs) or neural progenitor cells (NPCs). Increasing lines of evidence show that neurogenesis impairment is involved in different neurological illnesses, including mood disorders, neurogenerative diseases, and central nervous system (CNS) injuries. Since reversing neurogenesis impairment was found to improve neurological outcomes in the pathological conditions, it is speculated that modulating neurogenesis is a potential therapeutic strategy for neurological diseases. Among different modulators of neurogenesis, melatonin is a particularly interesting one. In traditional understanding, melatonin controls the circadian rhythm and sleep–wake cycle, although it is not directly involved in the proliferation and survival of neurons. In the last decade, it was reported that melatonin plays an important role in the regulation of neurogenesis, and thus it may be a potential treatment for neurogenesis-related disorders. The present review aims to summarize and discuss the recent findings regarding the protective effects of melatonin on the neurogenesis impairment in different neurological conditions. We also address the molecular mechanisms involved in the actions of melatonin in neurogenesis modulation.
机译:神经发生是从神经干细胞(NSCs)或神经祖细胞(NPC)产生功能新神经元的过程。增加的证据表明,神经发生障碍涉及不同的神经疾病,包括情绪障碍,神经源性疾病和中枢神经系统(CNS)损伤。由于发现逆转神经发生损伤以改善病理条件下的神经原因,因此调节神经发生是神经疾病的潜在治疗策略。在神经发生的不同调节剂中,褪黑激素是特别有趣的。在传统的理解中,褪黑素控制昼夜节律和睡眠唤醒循环,尽管它不直接参与神经元的增殖和存活。据报道,据报道,褪黑激素在神经发生调节中发挥着重要作用,因此它可能是对神经发生相关疾病的潜在治疗方法。本综述旨在总结和讨论最近关于褪黑素对不同神经病症中神经发生损伤的保护作用的研究结果。我们还解决了在神经发生调节中映射中涉及褪黑素作用的分子机制。

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