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Separation of extracellular nanovesicles and apoptotic bodies from cancer cell culture broth using tunable microfluidic systems

机译:使用可调微流系统从癌细胞培养液中分离细胞外纳米囊泡和凋亡小体

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摘要

Extracellular vesicles (EVs) are the cell-secreted nano- and micro-sized particles consisted of lipid bilayer containing nucleic acids and proteins for diagnosis and therapeutic applications. The inherent complexity of EVs is a source of heterogeneity in various potential applications of the biological nanovesicles including analysis. To diminish heterogeneity, EV should be isolated and separated according to their sizes and cargos. However, current technologies do not meet the requirements. We showed noninvasive and precise separation of EVs based on their sizes without any recognizable damages. We separated atto-liter volumes of biological nanoparticles through operation of the present system showing relatively large volume of sample treatment to milliliters within an hour. We observed distinct size and morphological differences of 30 to 100 nm of exosomes and apoptotic bodies through TEM analysis. Indeed, we confirmed the biological moiety variations through immunoblotting with noninvasively separated EVs opening new windows in study and application of the biological nanoparticles.
机译:细胞外囊泡(EVs)是细胞分泌的纳米和微米大小的颗粒,由脂质双层构成,包含用于诊断和治疗应用的核酸和蛋白质。电动汽车固有的复杂性是生物纳米囊泡包括分析在内的各种潜在应用中异质性的根源。为了减少异质性,应根据EV的大小和货物对其进行隔离和分离。但是,当前的技术不能满足要求。我们展示了基于电动汽车尺寸的无创,精确分离,没有任何可识别的损坏。通过本系统的操作,我们分离了升至一升体积的生物纳米颗粒,显示出在一小时内相对大量的样品处理至毫升。通过TEM分析,我们观察到了外泌体和凋亡小体的30至100 nm的大小和形态差异。实际上,我们通过免疫印迹证实了生物部分的变化,无创分离的电动汽车为生物纳米颗粒的研究和应用打开了新窗口。

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