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Characterization of a Cell-Culturing System for the Study of Contact-Independent Extracellular Vesicle Communication

机译:用于独立于接触的细胞外囊泡通讯研究的细胞培养系统的表征。

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摘要

Appropriate and well-documented in vitro cell-culturing systems are necessary to study the activity and biological function of extracellular vesicles (EVs). The aim of this study was to describe an experimental system, in which dynamic, vesicle-based cell communication can be investigated. A commercially available cell-culturing system was applied to study contact-independent cell communication, which separated two cell populations using a membrane with a pore size of 0.4 μm. The EV exchange characteristics between the two compartments in the culture set-up was preliminarily investigated in a cell-free set-up, and analysed using the Extracellular Vesicle (EV) Array and Nanoparticle Tracking Analysis. The application of the cell-culturing set-up was demonstrated using co-cultures of human primary cells. The effects of the relative placement of the two cell populations on the phenotype of EVs found in the cell supernatant were investigated. The results indicate that this placement can be important for the biological hypothesis that is being investigated. These observations are relevant for short (<24h) as well as long (several days) studies of vesicle-based cell communication. Moreover, the introduced cell-culturing set-up and analytical strategy can be used to study contact-independent vesicle communication in a reproducible manner.
机译:适当的和有据可查的体外细胞培养系统对于研究细胞外囊泡(EVs)的活性和生物学功能是必需的。这项研究的目的是描述一个实验系统,在其中可以研究基于囊泡的动态细胞通讯。将可商购的细胞培养系统应用于研究接触无关的细胞通讯,该通讯使用孔径为0.4μm的膜分离了两个细胞群。在无细胞设置中初步研究了培养设置中两个隔室之间的EV交换特性,并使用细胞外囊泡(EV)阵列和纳米颗粒跟踪分析进行了分析。使用人原代细胞的共培养证明了细胞培养装置的应用。研究了两个细胞群体的相对位置对在细胞上清液中发现的EV表型的影响。结果表明,该位置对于正在研究的生物学假设可能很重要。这些观察结果与基于囊泡的细胞通讯的短期研究(<24h)以及长期研究(几天)有关。此外,引入的细胞培养设置和分析策略可用于以可重现的方式研究接触独立的囊泡通讯。

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