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内体在大脑中的关键作用的新见解:从神经元活动到治疗效果。

Insights into the Critical Role of Exosomes in the Brain; from Neuronal Activity to Therapeutic Effects.

机构信息

Koç University Research Center for Translational Medicine (KUTTAM), Rumeli Feneri, 34450, Sariyer, Istanbul, Turkey.

Department of Biophysics, School of Medicine, Koç University, Rumeli Feneri Road, 34450, Sarıyer/Istanbul, Turkey.

出版信息

Mol Neurobiol. 2022 Jul;59(7):4453-4465. doi: 10.1007/s12035-022-02853-z. Epub 2022 May 16.

Abstract

Exo are natural nano-sized vesicles with an endosomal origin that maintain cell-to-cell communications in a paracrine manner. Owing to their physicochemical properties, Exo transfer various types of bioactive metabolites from origin cells to the recipient cells, resulting in induction/inhibition of specific signaling pathways. Like different tissues, Exo are indispensable for the function of neural cells inside the brain parenchyma. Various aspects such as neurogenesis, microglial polarization, and angiogenesis are closely associated with the reciprocal interchanges of Exo between cells in a tightly regulated manner. Similar to physiological conditions, these particles can affect the progression of inflammatory responses following the onset of pathologies. The existence of several uptake exosomal mechanisms, such as receptor-mediated endocytosis, and high penetration capacity into the deep layers of the brain makes Exo promising bio-shuttles for the alleviation of pathological conditions. Like astrocytes, stem cells can release Exo into the surrounding niche with neuroprotective properties regenerative potential. Whether and how Exo can initiate the essential signals required for neurogenesis has not been fully understood. In this review, we will try to elaborate on the putative therapeutic role of Exo in the dynamic activity of neuronal cells.

摘要

外泌体是具有内体起源的天然纳米大小囊泡,以旁分泌方式维持细胞间通讯。由于其物理化学性质,外泌体将各种类型的生物活性代谢物从起源细胞传递到受体细胞,从而诱导/抑制特定的信号通路。就像不同的组织一样,外泌体对于脑实质内神经细胞的功能也是必不可少的。神经发生、小胶质细胞极化和血管生成等各个方面都与细胞之间外泌体的相互交换密切相关,这种交换受到严格的调控。与生理条件类似,这些颗粒可以影响病理发生后炎症反应的进展。存在几种摄取外泌体的机制,如受体介导的内吞作用和穿透大脑深层的高能力,使得外泌体成为缓解病理状况的有前途的生物穿梭载体。像星形胶质细胞一样,干细胞可以将具有神经保护和再生潜力的外泌体释放到周围龛位中。外泌体是否以及如何能够引发神经发生所需的必要信号尚未完全理解。在这篇综述中,我们将尝试详细阐述外泌体在神经元细胞的动态活动中的潜在治疗作用。

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