Gudbergsson Johann Mar, Johnsen Kasper Bendix, Skov Martin Najbjerg, Duroux Meg
Laboratory of Cancer Biology, Institute of Health Science and Technology, Aalborg University, Fredrik Bajers Vej 3B, 9220, Aalborg Ø, Denmark.
Laboratory of Neurobiology, Institute of Health Science and Technology, Aalborg University, Fredrik Bajers Vej 3B, 9220, Aalborg Ø, Denmark.
Cytotechnology. 2016 Aug;68(4):579-92. doi: 10.1007/s10616-015-9913-6. Epub 2015 Oct 3.
The potential therapeutic utility of extracellular vesicles (EVs) has spawned an interest into a scalable production, where the quantity and purity of EV samples is sufficient for clinical applications. EVs can be isolated using several different protocols; however, these isolation protocols and the subsequent methods of quantifying the resulting EV yield have not been sufficiently standardized. Therefore, the possibility of comparing different studies with respect to these parameters is limited. In this review, we have presented factors that might influence the yield and function of EVs from cell culture supernatants. The methods of isolation, downstream quantification, and culture conditions of the EV producing cells have been discussed. In order to examine the inter-study coherency of EV yields, 259 studies were initially screened, and 46 studies were included for extensive downstream analysis of EV yields where information pertaining to the isolation protocols and quantification methods was obtained from each study. Several other factors influencing yield were compared, such as cell type producing EVs, cell confluence level, and cell stimulation. In conclusion, various factors may impact the resulting EV yield, including technical aspects such as EV isolation and quantification procedures, and biological aspects such as cell type and culture conditions. The reflections presented in this review might aid in future standardization of the workflow in EV research.
细胞外囊泡(EVs)潜在的治疗效用引发了人们对可扩展生产的兴趣,即EV样本的数量和纯度足以用于临床应用。可以使用几种不同的方案分离EVs;然而,这些分离方案以及随后对所得EV产量进行量化的方法尚未得到充分标准化。因此,就这些参数比较不同研究的可能性有限。在本综述中,我们介绍了可能影响细胞培养上清液中EVs产量和功能的因素。讨论了EV产生细胞的分离方法、下游定量方法和培养条件。为了检验不同研究中EV产量的一致性,最初筛选了259项研究,纳入46项研究进行EV产量的广泛下游分析,从每项研究中获取了与分离方案和定量方法相关的信息。还比较了其他几个影响产量的因素,如产生EVs的细胞类型、细胞汇合水平和细胞刺激。总之,各种因素可能会影响最终的EV产量,包括EV分离和定量程序等技术方面,以及细胞类型和培养条件等生物学方面。本综述中的思考可能有助于未来EV研究工作流程的标准化。