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首页> 外文期刊>Frontiers in Molecular Biosciences >Orchestrating Extracellular Vesicle With Dual Reporters for Imaging and Capturing in Mammalian Cell Culture
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Orchestrating Extracellular Vesicle With Dual Reporters for Imaging and Capturing in Mammalian Cell Culture

机译:用双重记者策划细胞外囊泡,用于哺乳动物细胞培养中的成像和捕获

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BACKGROUND: Recent technological advancements have enabled live-cell imaging of intracellular organelles to monitor their biogenesis in mammalian cells. However, applying this method to gain insight into extracellular organelles, such as extracellular vesicles (EVs), presents unique challenges that require special considerations in design and engineering. RESULTS: We have developed a dual-reporter system that combines genetic fusion, fluorescence microcopy and magnetic beads capture of EVs to study the biogenesis of EVs in mammalian cell cultures. First, we genetically produced a series of reporters by fusing a green fluorescent protein (GFP) and an affinity peptide (6xHis), with either the endogenous transmembrane protein, CD63, or EVs targeting vesicular stomatitis viral glycoprotein (VSVG). Transfection of these reporters into human 293T cells resulted in expression and integration of these reporters into exosome compartments, which were subsequently released into the culture medium. Confocal imaging and nano-particle tracking analysis demonstrated that EVs were appropriately labeled and exhibited a single dominant peak in the 80~110 nm size range, indicating that isolated EVs were comprised of micro-vesicles and/or exosome subpopulations. Incubation of isolated EVs with nickel-coated magnetic beads resulted in successful capture of GFP-positive EVs. Finally, addition of EVs into culture medium was able to reveal the cellular uptake of GFP-labeled EVs by recipient cells. Taken together, our dual-reporter system provides a powerful method for both monitoring and capturing of EVs in mammalian cell culture systems. CONCLUSIONS: A dual-reporter system provides a robust tool to study the life cycle of EVs in mammalian cells from biogenesis and excretion to cellular uptake.
机译:背景:最近的技术进步使细胞内细胞器的活细胞成像使其在哺乳动物细胞中的生物发生。然而,应用这种方法可以进入细胞外细胞细胞的洞察力,例如细胞外囊泡(EVS),呈现出在设计和工程方面需要特殊考虑的独特挑战。结果:我们开发了一种双记者系统,将遗传融合,荧光微孔和磁珠捕获相结合,研究哺乳动物细胞培养物中的EVS生物发生。首先,我们通过融合绿色荧光蛋白(GFP)和亲和肽(6xHis),与内源跨膜蛋白,CD63或EVS靶向塑性口腔炎病毒糖蛋白(VSVG),通过归因于一系列记者。将这些记者转染到人的293T细胞中,导致这些记者的表达和将这些记者与外腔室中的整合,随后被释放到培养基中。共聚焦成像和纳米粒子跟踪分析表明,EVS适当地标记并在80〜110nm尺寸范围内表现出单一的显性峰,表明分离的EV是由微囊和/或外出的亚群组成。孵育含镍涂层磁性珠粒导致GFP阳性EV的成功捕获。最后,进入培养基中的EVS能够通过受体细胞揭示GFP标记的EVS的细胞吸收。我们的双重记者体系在一起提供了一种强大的方法,用于监测和捕获哺乳动物细胞培养系统中的EV。结论:双记者系统提供了一种鲁棒工具,用于研究哺乳动物细胞中EV的生命周期与生物发生和排泄到细胞摄取。

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