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完整的外泌体工作流程解决方案:从 RNA 货物的分离到表征。

The complete exosome workflow solution: from isolation to characterization of RNA cargo.

机构信息

Life Technologies, Austin, TX 78744, USA.

出版信息

Biomed Res Int. 2013;2013:253957. doi: 10.1155/2013/253957. Epub 2013 Sep 25.

Abstract

Exosomes are small (30-150 nm) vesicles containing unique RNA and protein cargo, secreted by all cell types in culture. They are also found in abundance in body fluids including blood, saliva, and urine. At the moment, the mechanism of exosome formation, the makeup of the cargo, biological pathways, and resulting functions are incompletely understood. One of their most intriguing roles is intercellular communication--exosomes function as the messengers, delivering various effector or signaling macromolecules between specific cells. There is an exponentially growing need to dissect structure and the function of exosomes and utilize them for development of minimally invasive diagnostics and therapeutics. Critical to further our understanding of exosomes is the development of reagents, tools, and protocols for their isolation, characterization, and analysis of their RNA and protein contents. Here we describe a complete exosome workflow solution, starting from fast and efficient extraction of exosomes from cell culture media and serum to isolation of RNA followed by characterization of exosomal RNA content using qRT-PCR and next-generation sequencing techniques. Effectiveness of this workflow is exemplified by analysis of the RNA content of exosomes derived from HeLa cell culture media and human serum, using Ion Torrent PGM as a sequencing platform.

摘要

外泌体是含有独特 RNA 和蛋白质货物的小(30-150nm)囊泡,由培养中的所有细胞类型分泌。它们也大量存在于体液中,包括血液、唾液和尿液。目前,外泌体形成的机制、货物的组成、生物途径和产生的功能还不完全清楚。它们最有趣的作用之一是细胞间通讯——外泌体作为信使,在特定细胞之间传递各种效应物或信号大分子。对外泌体的结构和功能进行剖析,并利用它们开发微创诊断和治疗方法的需求呈指数级增长。进一步了解外泌体的关键是开发用于其分离、表征和分析 RNA 和蛋白质含量的试剂、工具和方案。在这里,我们描述了一个完整的外泌体工作流程解决方案,从快速有效地从细胞培养介质和血清中提取外泌体开始,到分离 RNA,然后使用 qRT-PCR 和下一代测序技术对外泌体 RNA 含量进行表征。使用 Ion Torrent PGM 作为测序平台,分析 HeLa 细胞培养介质和人血清来源的外泌体的 RNA 含量,证明了该工作流程的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f80/3800616/deb9e5c12823/BMRI2013-253957.001.jpg

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