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Extracellular Vesicles Influential Players of Intercellular Communication within Adult Neurogenic Niches

机译:细胞外囊泡在成人神经源性核桃内的细胞间通信的有影响力

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摘要

Adult neurogenesis, involving the generation of functional neurons from adult neural stem cells (NSCs), occurs constitutively in discrete brain regions such as hippocampus, sub-ventricular zone (SVZ) and hypothalamus. The intrinsic structural plasticity of the neurogenic process allows the adult brain to face the continuously changing external and internal environment and requires coordinated interplay between all cell types within the specialized microenvironment of the neurogenic niche. NSC-, neuronal- and glia-derived factors, originating locally, regulate the balance between quiescence and self-renewal of NSC, their differentiation programs and the survival and integration of newborn cells. Extracellular Vesicles (EVs) are emerging as important mediators of cell-to-cell communication, representing an efficient way to transfer the biologically active cargos (nucleic acids, proteins, lipids) by which they modulate the function of the recipient cells. Current knowledge of the physiological role of EVs within adult neurogenic niches is rather limited. In this review, we will summarize and discuss EV-based cross-talk within adult neurogenic niches and postulate how EVs might play a critical role in the regulation of the neurogenic process.
机译:成年神经发生,涉及从成年神经干细胞(NSCs)的功能神经元,在离散脑区(如海马,亚心室区(SVZ)和下丘脑)中发生组成型。神经源性过程的内在结构可塑性使成年大脑面临不断变化的外部和内部环境,并且需要在神经源性地基的专业微环境中的所有细胞类型之间进行协调相互作用。 NSC-,神经元和胶虫衍生的因子,源于本地,调节静态与NSC的自我更新之间的平衡,它们的分化计划和新生儿细胞的存活和整合。细胞外囊(EVS)作为细胞对细胞通信的重要介质,代表转移生物活性的尸体(核酸,蛋白质,脂质)的有效方式,它们通过它们调节受体细胞的功能。目前对成年内源性粘性ICE内EVS的生理作用的了解是有限的。在这篇综述中,我们将总结和讨论在成人神经源性核糖中的ex串扰,并假设EVS在神经源过程的调节中如何发挥关键作用。

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