Zhang Yuan, Liu Yunfeng, Liu Haiying, Tang Wai Ho
1Institute of Pediatrics, Guangzhou Women and Children's Medical Center, Guangzhou Medical University, Guangzhou, 510623 Guangdong China.
2Clinical Laboratory Department, Guangzhou Women and Children's Medical Center, Guangzhou Medical University, Guangzhou, 510623 Guangdong China.
Cell Biosci. 2019 Feb 15;9:19. doi: 10.1186/s13578-019-0282-2. eCollection 2019.
Exosomes are nano-sized biovesicles released into surrounding body fluids upon fusion of multivesicular bodies and the plasma membrane. They were shown to carry cell-specific cargos of proteins, lipids, and genetic materials, and can be selectively taken up by neighboring or distant cells far from their release, reprogramming the recipient cells upon their bioactive compounds. Therefore, the regulated formation of exosomes, specific makeup of their cargo, cell-targeting specificity are of immense biological interest considering extremely high potential of exosomes as non-invasive diagnostic biomarkers, as well as therapeutic nanocarriers. In present review, we outline and discuss recent progress in the elucidation of the regulatory mechanisms of exosome biogenesis, the molecular composition of exosomes, and technologies used in exosome research. Furthermore, we focus on the potential use of exosomes as valuable diagnostic and prognostic biomarkers for their cell-lineage and state-specific contents, and possibilities as therapeutic vehicles for drug and gene delivery. Exosome research is now in its infancy, in-depth understanding of subcellular components and mechanisms involved in exosome formation and specific cell-targeting will bring light on their physiological activities.
外泌体是多囊泡体与质膜融合后释放到周围体液中的纳米级生物囊泡。研究表明,它们携带细胞特异性的蛋白质、脂质和遗传物质货物,并且可以被远离其释放部位的邻近或远处细胞选择性摄取,通过其生物活性化合物对受体细胞进行重编程。因此,考虑到外泌体作为非侵入性诊断生物标志物以及治疗性纳米载体的巨大潜力,外泌体的调控形成、其货物的特定组成、细胞靶向特异性具有极大的生物学意义。在本综述中,我们概述并讨论了在外泌体生物发生调控机制的阐明、外泌体的分子组成以及外泌体研究中使用的技术方面的最新进展。此外,我们关注外泌体因其细胞谱系和状态特异性内容物而作为有价值的诊断和预后生物标志物的潜在用途,以及作为药物和基因递送治疗载体的可能性。外泌体研究目前尚处于起步阶段,对外泌体形成和特定细胞靶向所涉及的亚细胞成分和机制的深入理解将揭示它们的生理活动。