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The glia doctrine: Addressing the role of glial cells in healthy brain ageing

机译:神经胶质学说:解决神经胶质细胞在健康的大脑衰老中的作用

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Glial cells in their plurality pervade the human brain and impact on brain structure and function. A principal component of the emerging glial doctrine is the hypothesis that astrocytes, the most abundant type of glial cells, trigger major molecular processes leading to brain ageing. Astrocyte biology has been examined using molecular, biochemical and structural methods, as well as 3D brain imaging in live animals and humans. Exosomes are extracelluar membrane vesicles that facilitate communication between glia, and have significant potential for biomarker discovery and drug delivery. Polymorphisms in DNA repair genes may indirectly influence the structure and function of membrane proteins expressed in glial cells and predispose specific cell subgroups to degeneration. Physical exercise may reduce or retard age-related brain deterioration by a mechanism involving neuro-glial processes. It is most likely that additional information about the distribution, structure and function of glial cells will yield novel insight into human brain ageing. Systematic studies of glia and their functions are expected to eventually lead to earlier detection of ageing-related brain dysfunction and to interventions that could delay, reduce or prevent brain dysfunction.
机译:多个神经胶质细胞遍及人脑并影响脑结构和功能。新兴的神经胶质学说的主要组成部分是一种假设,即星形胶质细胞是神经胶质细胞中最丰富的一种,会触发导致大脑衰老的主要分子过程。已使用分子,生化和结构方法以及活体动物和人的3D脑成像检查了星形胶质细胞生物学。外泌体是细胞外膜囊泡,可促进神经胶质之间的通讯,并具有发现生物标志物和药物递送的巨大潜力。 DNA修复基因中的多态性可能间接影响神经胶质细胞中表达的膜蛋白的结构和功能,并使特定的细胞亚群易于变性。体育锻炼可以通过涉及神经胶质过程的机制减少或延缓与年龄有关的大脑退化。关于神经胶质细胞分布,结构和功能的其他信息很可能会产生有关人脑衰老的新颖见解。胶质细胞及其功能的系统研究有望最终导致与衰老相关的脑功能障碍的早期发现,并可能导致延迟,减少或预防脑功能障碍的干预措施。

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