Wessler Silja, Meisner-Kober Nicole
Department of Biosciences and Medical Biology, Center for Tumor Biology and Immunology (CTBI), Paris-Lodron University Salzburg, University of Salzburg, Salzburg, Austria.
Cell Commun Signal. 2025 Feb 18;23(1):95. doi: 10.1186/s12964-024-01999-8.
Cells from organisms across all kingdoms of life continuously release a diverse repertoire of extracellular vesicles (EVs) into their extracellular environment as an elegant strategy for both, cellular homeostasis and communication with other cells. Through different biogenesis routes within the donor cell, nanosized vesicles are generated either from endomembranes or the plasma membrane, and loaded and decorated with macromolecular cargo in a controlled manner through molecular sorting machineries. Since they can affect a recipient cell in the same tissue, distant organs or even other organisms, EVs have been increasingly recognized as essential mediators orchestrating intercellular communication in health and disease. In the last 15 years, research on the fundamental biology of EVs as well as their potential for biomedical applications has been greatly intensified. Time to present new advances on EV biogenesis, their intercellular communication competencies as well as technical and biomedical applications in a special thematic series of Cell Communication and Signaling.
来自生命所有界的生物体的细胞持续向细胞外环境释放各种不同的细胞外囊泡(EVs),这是一种维持细胞内稳态以及与其他细胞通讯的精妙策略。通过供体细胞内不同的生物发生途径,纳米大小的囊泡由内膜或质膜产生,并通过分子分选机制以可控方式装载和修饰大分子货物。由于它们能够影响同一组织、远处器官甚至其他生物体中的受体细胞,EVs越来越被认为是健康和疾病中协调细胞间通讯的重要介质。在过去15年中,关于EVs基础生物学及其生物医学应用潜力的研究大大加强。是时候在《细胞通讯与信号传导》的一个特殊主题系列中展示EVs生物发生、它们的细胞间通讯能力以及技术和生物医学应用方面的新进展了。