首页> 外文期刊>Biochemistry (Moscow). Supplement, Series A. Membrane and cell biology >Glia and Glial Polyamines. Role in Brain Function in Health and Disease
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Glia and Glial Polyamines. Role in Brain Function in Health and Disease

机译:胶质和胶质多胺。在脑功能健康与疾病中的作用

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摘要

The roles of glia and polyamines (PA) in brain function and dysfunction are highlighted in this review. We emphasize that PA accumulation preferentially in glia, but not in neurons, is clearly evolutionarily determined; it is found throughout the brain, retina, peripheral nervous system, and in glial-neuronal co-cultures of multiple species, including man. This phenomenon raises key questions: (i) What are the mechanisms that underlie such uneven distribution, accumulation and release from glia? (ii) What are the consequences of PA fluxes within the brain on neuronal function? (iii) What are the roles of PAs in brain disorders and diseases? This review includes suggestions on the roles of PAs, such as putrescine (PT), spermidine (SPD), spermine (SPM) and their derivatives as novel glio-transmitters in brain since PA affect many neuronal and glial receptors, channels and transporters. Polyamines hitherto have been neglected, although it is evident that these molecules are key elements for normal brain function and their metabolic disorders, apparently, cause the development of many pathological syndromes and diseases. The study of endogenous PA allows one to put forward the basic principles of scientific research on glio-neuronal interactions and clinical therapies, which are based on the exclusivity of glial cells in terms of accumulation of PA and PA-dependent functions.
机译:这篇综述重点介绍了神经胶质和多胺(PA)在脑功能和功能障碍中的作用。我们强调,PA优先在神经胶质而不是神经元中的蓄积显然是通过进化决定的。它遍布大脑,视网膜,周围神经系统以及包括人类在内的多种物种的神经胶质-神经元共培养物中。这种现象引起了关键问题:(i)胶质细胞分布不均,堆积和释放的机制是什么? (ii)大脑中的PA通量对神经元功能有何影响? (iii)PA在脑部疾病和疾病中的作用是什么?由于PA影响许多神经元和神经胶质受体,通道和转运蛋白,因此本文对PA的作用提出了建议,例如腐胺(PT),亚精胺(SPD),亚精胺(SPM)及其衍生物作为新型胶质递质在大脑中的作用。迄今为止,聚胺已被忽略,尽管很明显,这些分子是正常大脑功能的关键元素,而且它们的代谢紊乱显然会导致许多病理综合征和疾病的发展。内源性PA的研究使人们能够提出神经胶质-神经元相互作用和临床疗法的科学研究的基本原理,这些基本原理基于神经胶质细胞在PA积累和PA依赖功能方面的排他性。

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