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首页> 外文期刊>Frontiers in Physiology >Reciprocal Interactions of Mitochondria and the Neuroimmunoendocrine System in Neurodegenerative Disorders: An Important Role for Melatonin Regulation
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Reciprocal Interactions of Mitochondria and the Neuroimmunoendocrine System in Neurodegenerative Disorders: An Important Role for Melatonin Regulation

机译:线粒体和神经免疫内分泌系统在神经退行性疾病中的相互相互作用:褪黑激素调节的重要作用

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Structural and functional alterations of mitochondria are intimately linked to a wide array of medical conditions. Many factors are involved in the regulation of mitochondrial function, including cytokines, chaperones, chemokines, neurosteroids, and ubiquitins. The role of diffusely located cells of the neuroendocrine system, including biogenic amines and peptide hormones, in the management of mitochondrial function, as well as the role of altered mitochondrial function in the regulation of these cells and system, is an area of intense investigation. The current article looks at the interactions among the cells of the neuronal-glia, immune and endocrine systems, namely the diffuse neuroimmunoendocrine system (DNIES), and how DNIES interacts with mitochondrial function. Whilst changes in DNIES can impact on mitochondrial function, local, and systemic alterations in mitochondrial function can alter the component systems of DNIES and their interactions. This has etiological, course, and treatment implications for a wide range of medical conditions, including neurodegenerative disorders. Available data on the role of melatonin in these interactions, at cellular and system levels, are reviewed, with directions for future research indicated.
机译:线粒体的结构和功能改变与多种医学状况密切相关。线粒体功能的调节涉及许多因素,包括细胞因子,分子伴侣,趋化因子,神经固醇和泛素。神经内分泌系统中分散分布的细胞(包括生物胺和肽激素)在线粒体功能管理中的作用以及线粒体功能改变在调节这些细胞和系统中的作用是一个需要深入研究的领域。目前的文章着眼于神经胶质细胞,免疫系统和内分泌系统,即弥漫性神经免疫内分泌系统(DNIES)之间的相互作用,以及DNIES如何与线粒体功能相互作用。虽然DNIES的变化会影响线粒体功能,但线粒体功能的局部和全身性变化会改变DNIES的组成系统及其相互作用。这对包括神经退行性疾病在内的多种医学疾病具有病因,病程和治疗意义。审查了褪黑素在这些相互作用中在细胞和系统水平上的作用的可用数据,并指出了未来研究的方向。

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