Role of melatonin in regulating neurogenesis: Implications for the neurodegenerative pathology and analogous therapeutics for Alzheimer’s disease

M. Shukla, Areechun Sotthibundhu, P. Govitrapong
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引用次数: 4

Abstract

The revelation of adult brain exhibiting neurogenesis has established that the brain possesses great plasticity and that neurons could be spawned in the neurogenic zones where hippocampal adult neurogenesis attributes to learning and memory processes. With strong implications in brain functional homeostasis, aging and cognition, various aspects of adult neurogenesis reveal exuberant mechanistic associations thereby further aiding in facilitating the therapeutic approaches regarding the development of neurodegenerative processes in Alzheimer’s Disease (AD). Impaired neurogenesis has been significantly evident in AD with compromised hippocampal function and cognitive deficits. Melatonin the pineal indolamine augments neurogenesis and has been linked to AD development as its levels are compromised with disease progression. Here, in this review, we discuss and appraise the mechanisms via which melatonin regulates neurogenesis in pathophysiological conditions which would unravel the molecular basis in such conditions and its role in endogenous brain repair. Also, its components as key regulators of neural stem and progenitor cell proliferation and differentiation in the embryonic and adult brain would aid in accentuating the therapeutic implications of this indoleamine in line of prevention and treatment of AD.   
褪黑素在调节神经发生中的作用:对阿尔茨海默病的神经退行性病理和类似治疗的影响
成人大脑神经发生的发现证实了大脑具有很强的可塑性,神经元可以在海马神经发生区产生,而海马神经发生与学习和记忆过程有关。成人神经发生的各个方面在脑功能稳态、衰老和认知方面具有重要意义,揭示了丰富的机制关联,从而进一步帮助促进了阿尔茨海默病(AD)神经退行性过程发展的治疗方法。阿尔茨海默病伴海马功能受损和认知缺陷的神经发生受损非常明显。褪黑素(松果体吲哚胺)增强神经发生,并与阿尔茨海默病的发展有关,因为其水平随着疾病进展而降低。在这篇综述中,我们讨论和评价了褪黑素在病理生理条件下调节神经发生的机制,这将揭示这种情况下的分子基础及其在内源性脑修复中的作用。此外,其成分作为胚胎和成人大脑中神经干和祖细胞增殖和分化的关键调节因子,将有助于强调该吲哚胺在预防和治疗AD方面的治疗意义。
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