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首页> 外文期刊>Nature reviews neuroscience >Extracellular Vesicle-Mediated Cell-Cell Communication in the Nervous System: Focus on Neurological Diseases
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Extracellular Vesicle-Mediated Cell-Cell Communication in the Nervous System: Focus on Neurological Diseases

机译:细胞外囊泡介导的神经系统中的细胞 - 细胞通信:专注于神经系统疾病

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摘要

Extracellular vesicles (EVs), including exosomes, are membranous particles released by cells into the extracellular space. They are involved in cell differentiation, tissue homeostasis, and organ remodelling in virtually all tissues, including the central nervous system (CNS). They are secreted by a range of cell types and via blood reaching other cells whose functioning they can modify because they transport and deliver active molecules, such as proteins of various types and functions, lipids, DNA, and miRNAs. Since they are relatively easy to isolate, exosomes can be characterized, and their composition elucidated and manipulated by bioengineering techniques. Consequently, exosomes appear as promising theranostics elements, applicable to accurately diagnosing pathological conditions, and assessing prognosis and response to treatment in a variety of disorders. Likewise, the characteristics and manageability of exosomes make them potential candidates for delivering selected molecules, e.g., therapeutic drugs, to specific target tissues. All these possible applications are pertinent to research in neurophysiology, as well as to the study of neurological disorders, including CNS tumors, and autoimmune and neurodegenerative diseases. In this brief review, we discuss what is known about the role and potential future applications of exosomes in the nervous system and its diseases, focusing on cell-cell communication in physiology and pathology.
机译:细胞外囊(EVS),包括外泌体,是细胞释放到细胞外空间中的膜质颗粒。它们参与细胞分化,组织稳态,以及几乎所有组织的器官重塑,包括中枢神经系统(CNS)。它们被一系列细胞类型和通过血液到达其功能,其能够改变的其他细胞分泌,因为它们运输和递送活性分子,例如各种类型的蛋白质,脂质,DNA和miRNA。由于它们相对容易分离,因此可以表征外泌体,并且它们的组合物被生物工程技术阐明和操纵。因此,外泌体呈现为有前途的治疗元件,适用于准确地诊断病理条件,并评估预后和对各种疾病治疗的反应。同样地,外来的特征和可管理性使其成为递送所选分子,例如治疗药物的潜在候选者,例如治疗药物到特定的靶组织。所有这些可能的应用都与神经生理学的研究有关,以及研究神经系统疾病的研究,包括CNS肿瘤和自身免疫和神经变性疾病。在这篇简短的综述中,我们讨论了对神经系统及其疾病在神经系统和疾病中的作用和潜在未来应用所知的内容,重点是生理和病理学中的细胞 - 细胞通信。

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