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外泌体介导的组织损伤与修复中的细胞间通讯。

Exosome Mediated Cell-Cell Crosstalk in Tissue Injury and Repair.

机构信息

McGowan Institute for Regenerative Medicine, Department of Surgery, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

出版信息

Results Probl Cell Differ. 2024;73:249-297. doi: 10.1007/978-3-031-62036-2_12.

Abstract

The landscape of exosome research has undergone a significant paradigm shift, with a departure from early conceptions of exosomes as vehicles for cellular waste disposal towards their recognition as integral components of cellular communication with therapeutic potential. This chapter presents an exhaustive elucidation of exosome biology, detailing the processes of exosome biogenesis, release, and uptake, and their pivotal roles in signal transduction, tissue repair, regeneration, and intercellular communication. Additionally, the chapter highlights recent innovations and anticipates future directions in exosome research, emphasizing their applicability in clinical settings. Exosomes have the unique ability to navigate through tissue spaces to enter the circulatory system, positioning them as key players in tissue repair. Their contributory role in various processes of tissue repair, although in the nascent stages of investigation, stands out as a promising area of research. These vesicles function as a complex signaling network for intracellular and organ-level communication, critical in both pathological and physiological contexts. The chapter further explores the tissue-specific functionality of exosomes and underscores the advancements in methodologies for their isolation and purification, which have been instrumental in expanding the scope of exosome research. The differential cargo profiles of exosomes, dependent on their cellular origin, position them as prospective diagnostic biomarkers for tissue damage and regenerative processes. Looking ahead, the trajectory of exosome research is anticipated to bring transformative changes to biomedical fields. This includes advancing diagnostic and prognostic techniques that utilize exosomes as non-invasive biomarkers for a plethora of diseases, such as cancer, neurodegenerative, and cardiovascular conditions. Additionally, engineering exosomes through alterations of their native content or surface properties presents a novel frontier, including the synthesis of artificial or hybrid variants with enhanced functional properties. Concurrently, the ethical and regulatory frameworks surrounding exosome research, particularly in clinical translation, will require thorough deliberation. In conclusion, the diverse aspects of exosome research are coalescing to redefine the frontiers of diagnostic and therapeutic methodologies, cementing its importance as a discipline of considerable consequence in the biomedical sciences.

摘要

外泌体研究的格局发生了重大转变,早期认为外泌体是细胞废物处理的载体,现在则认识到它们是细胞通讯的组成部分,具有治疗潜力。本章全面阐述了外泌体生物学,详细介绍了外泌体的生物发生、释放和摄取过程,以及它们在信号转导、组织修复、再生和细胞间通讯中的关键作用。此外,本章还强调了外泌体研究的最新创新和未来方向,突出了它们在临床环境中的应用。外泌体具有穿越组织间隙进入循环系统的独特能力,使其成为组织修复的关键参与者。它们在外泌体研究中,虽然处于初期阶段,但在组织修复的各个过程中发挥了重要作用,这是一个很有前途的研究领域。这些囊泡作为细胞内和器官水平通讯的复杂信号网络发挥作用,在病理和生理环境中都至关重要。本章还进一步探讨了外泌体的组织特异性功能,并强调了用于其分离和纯化的方法学进展,这些进展为外泌体研究的扩展提供了支持。外泌体的差异货物谱取决于其细胞起源,使它们成为组织损伤和再生过程的有前途的诊断生物标志物。展望未来,外泌体研究的轨迹预计将给生物医学领域带来变革。这包括推进诊断和预后技术,利用外泌体作为多种疾病(如癌症、神经退行性疾病和心血管疾病)的非侵入性生物标志物。此外,通过改变其天然内容或表面特性来工程化外泌体,提出了一个新的前沿领域,包括合成具有增强功能特性的人工或杂交变体。同时,外泌体研究的伦理和监管框架,特别是在临床转化方面,将需要进行深入审议。总之,外泌体研究的各个方面正在汇聚,重新定义了诊断和治疗方法的前沿,巩固了其作为生物医学科学中一个非常重要的学科的地位。

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