成人大脑神经退行性疾病中的神经发生。

Tomasz Stępień
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引用次数: 1

摘要

目的:成人脑神经发生是大脑中新神经元细胞分裂、分化和整合的过程。在脑室下区产生的神经元迁移到嗅球,而在齿状回中新形成的神经元迁移到局部。从神经干细胞开始的成体神经发生,除了胶质神经元外,还形成星形胶质细胞和少突胶质细胞。神经发生受内源性和外源性因素调控,影响细胞祖细胞的增殖潜能,加快新形成神经元树突连接的发育速度。观点:发展中的神经退行性疾病的缓慢的初始过程可能对神经发生有刺激作用。促炎因子水平的增加可能有助于新神经元的形成。文献中的数据似乎证实了一个类似的假设。炎症过程中前神经源性作用的重要性体现在活跃的小胶质细胞分泌的蛋白质中,主要是cd47和cd55以及白细胞介素4和10。另一方面,大脑炎症过程的不利影响通常与慢性疾病有关,当受刺激的小胶质细胞增加对神经发生有负面影响的细胞因子浓度时。结论:恢复新生神经元与死亡神经元之间的平衡对神经退行性疾病的治疗具有重要意义,为新的治疗方向提供了希望。我们注意到可能成为进一步研究目标的共同点。应注意钙代谢的紊乱,这在信号转导中很重要,线粒体的状态与参与ATP形成的酶有关,神经源区炎症的减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neurogenesis in neurodegenerative diseases in the adult human brain.

Purpose: Adult human brain neurogenesis is the process of cell division, differentiation, and integration of the new neurons in the brain. The neurons that arise in subventricular zone migrate to the olfactory bulb, while the newly formed neurons in the dentate gyrus migrate locally. In adult neurogenesis starting from neural stem cells, in addition to glial neurons astrocytes and oligodendrocytes are also formed. Neurogenesis is regulated by endogenous and exogenous factors influencing the proliferation potential of progeni tor cells and accelerating the rate of development of the dendritic connections of newly formed neurons.

Views: The slow, initial process of a developing neurodegenerative disease may have a stimulating effect on neurogenesis. Increased levels of pro-inflammatory factors may contribute to the formation of new neurons. A similar hypothesis seems to be confirmed by data in the literature. The importance of proneurogenic effects during inflammation is shown by proteins secreted by active microglia, mainly CD 47 and CD 55 and interleukin 4 and 10. On the other hand, the unfavorable effect of the inflammatory process in the brain is usually associated with chronic disease in it, when stimulated microglia increase the concentration of cytokines that have a negative effect on neurogenesis.

Conclusions: Restoring the balance between dying and emerging neurons is important and offers hope for new therapy directions in the treatment of neurodegenerative diseases. We note common points that could become the target of further research. Attention should be paid to disorders of the calcium metabolism, so important in signal transduction, the state of mitochondria with enzymes involved in the formation of ATP, and the reduction of inflammation in neurogenic regions.

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