Research Center for Pharmaceutical Nanotechnology, Biomedicine Institute, Tabriz University of Medical Sciences, Tabriz, Iran.
Department of Anesthesiology, University at Buffalo, Jacobs School of Medicine and Biomedical Sciences, Buffalo, NY, United States of America.
Life Sci. 2024 Oct 1;354:122985. doi: 10.1016/j.lfs.2024.122985. Epub 2024 Aug 14.
Different categories of extracellular vesicles (EVs) are identified based on their origin and formation processes. Among these, exosomes (EXOs) originate from endosomal compartments merging with the plasma membrane, forming small lipid vesicles that transport a range of molecular cargo such as nucleic acids, proteins, and lipids. The composition of EXOs varies depending on their cellular source, encompassing various cell types, including neutrophils, dendritic cells, and even tumor cells. Remarkably, EXOs possess inherent stability, low immunogenicity, and compatibility, making them efficient nano vectors for drug delivery. Imaging techniques like bioluminescence, fluorescence, and nuclear imaging are crucial in non-invasively tracking EXOs within living organisms. This process requires the attachment of radionuclides to the EXO's structure without altering its essential characteristics. Real-time imaging of EXOs is vital for their clinical application, and recent advancements in labeling and tracking methodologies provide insights into biodistribution, functionality, and potential pathways for EXO-mediated drug delivery. This review presents updated progress in the diverse applications of EXOs in targeted imaging across various modalities, where they function as contrast agents facilitating tissue visualization and disease tracking. Consequently, EXOs emerge as promising entities in medical diagnostics and imaging.
不同类别的细胞外囊泡 (EVs) 根据其起源和形成过程进行识别。其中,外泌体 (EXOs) 起源于内体区室与质膜融合,形成小的脂质囊泡,运输各种分子货物,如核酸、蛋白质和脂质。EXOs 的组成因细胞来源而异,包括各种细胞类型,如中性粒细胞、树突状细胞,甚至肿瘤细胞。值得注意的是,EXOs 具有内在的稳定性、低免疫原性和兼容性,使其成为有效的药物递送纳米载体。生物发光、荧光和核成像等成像技术在非侵入性地跟踪活体内的 EXOs 中至关重要。这个过程需要将放射性核素附着到 EXO 的结构上,而不改变其基本特征。EXOs 的实时成像对于其临床应用至关重要,最近在标记和跟踪方法学方面的进展提供了对 EXO 介导的药物递送的生物分布、功能和潜在途径的深入了解。这篇综述介绍了 EXOs 在各种靶向成像模式中的多样化应用的最新进展,其中它们作为对比剂发挥作用,促进组织可视化和疾病跟踪。因此,EXOs 作为医学诊断和成像领域的有前途的实体出现。