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Liposome co-incubation with cancer cells secreted exosomes (extracellular vesicles) with different proteins expressions and different uptake pathways

机译:脂质体与癌细胞分泌的外泌体(细胞外囊泡)共同孵育,它们具有不同的蛋白质表达和不同的摄取途径

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We recently showed that in vitro incubation of cells with liposomes of varying compositions can increase exosome secretion and increase the yield of harvested exosomes (extracellular vesicles, EVs). This might foster their potential therapeutic implementations. In the current study, we investigated the surface proteins and the uptake of the harvested exosomes (EVs) to see if the incubation of cells with liposomes would change the biological properties of these exosomes (EVs). Interestingly, exosomes (EVs) induced by solid cationic liposomes lacked some major exosome marker proteins such as CD9, flotillin-1, annexin-A2 and EGF, and subsequently had lower levels of cellular uptake upon re-incubation with donor cancer cells. However, exosomes (EVs) induced under normal condition and by fluid cationic liposomes, displayed the entire spectrum of proteins, and exhibited higher uptake by the donor cancer cells. Although endocytosis was the major uptake pathway of exosomes (EVs) by tumor cells, endocytosis could occur via more than one mechanism. Higher exosome uptake was observed in donor B16BL6 cells than in allogeneic C26 cells, indicating that donor cells might interact specifically with their exosomes (EVs) and avidly internalize them. Taken together, these results suggest a technique for controlling the characteristics of secreted exosomes (EVs) by incubating donor cancer cells with liposomes of varying physiochemical properties.
机译:我们最近发现,将细胞与不同组成的脂质体进行体外孵育可以增加外泌体分泌并增加收获的外泌体(细胞外囊泡,EV)的产量。这可能会促进其潜在的治疗性实施。在当前的研究中,我们调查了表面蛋白和收获的外泌体(EVs)的摄取,以观察细胞与脂质体的孵育是否会改变这些外泌体(EVs)的生物学特性。有趣的是,由固体阳离子脂质体诱导的外泌体(EVs)缺少一些主要的外泌体标记蛋白,例如CD9,flortillin-1,膜联蛋白A2和EGF,随后在与供体癌细胞重新孵育后具有较低的细胞摄取水平。然而,在正常条件下和液体阳离子脂质体诱导的外泌体(EVs)显示了整个蛋白质谱,并表现出供体癌细胞更高的摄取。尽管内吞作用是肿瘤细胞摄取外泌体(EVs)的主要途径,但内吞作用可能通过多种机制发生。在供体B16BL6细胞中观察到的外泌体摄取高于同种异体C26细胞,这表明供体细胞可能与其外泌体(EV)发生特异性相互作用,并使其内在化。综上所述,这些结果表明了一种通过将供体癌细胞与理化性质不同的脂质体一起孵育来控制分泌的外泌体(EVs)特性的技术。

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