Kim Junyoung, Ro Jooyoung, Cho Yoon-Kyoung
Biomicrofluidics. 2024 Sep 23;18(5):051504. doi: 10.1063/5.0220840. eCollection 2024 Sep.
The vascular network plays an essential role in the maintenance of all organs in the body via the regulated delivery of oxygen and nutrients, as well as tissue communication via the transfer of various biological signaling molecules. It also serves as a route for drug administration and affects pharmacokinetics. Due to this importance, engineers have sought to create physiologically relevant and reproducible vascular systems in tissue, considering cell-cell and extracellular matrix interaction with structural and physical conditions in the microenvironment. Extracellular vesicles (EVs) have recently emerged as important carriers for transferring proteins and genetic material between cells and organs, as well as for drug delivery. Vascularized platforms can be an ideal system for studying interactions between blood vessels and EVs, which are crucial for understanding EV-mediated substance transfer in various biological situations. This review summarizes recent advances in vascularized platforms, standard and microfluidic-based techniques for EV isolation and characterization, and studies of EVs in vascularized platforms. It provides insights into EV-related (patho)physiological regulations and facilitates the development of EV-based therapeutics.
血管网络通过调节氧气和营养物质的输送,以及通过各种生物信号分子的传递进行组织通讯,在维持体内所有器官方面发挥着至关重要的作用。它还作为药物给药的途径并影响药代动力学。由于其重要性,工程师们试图在组织中创建与生理相关且可重复的血管系统,同时考虑细胞 - 细胞和细胞外基质与微环境中的结构和物理条件的相互作用。细胞外囊泡(EVs)最近已成为细胞和器官之间转移蛋白质和遗传物质以及药物递送的重要载体。血管化平台可能是研究血管与细胞外囊泡之间相互作用的理想系统,这对于理解细胞外囊泡在各种生物学情况下介导的物质转移至关重要。本综述总结了血管化平台、基于标准和微流控的细胞外囊泡分离与表征技术以及细胞外囊泡在血管化平台中的研究的最新进展。它提供了对细胞外囊泡相关(病理)生理调节的见解,并促进了基于细胞外囊泡的治疗方法的发展。