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Effective Visualization and Easy Tracking of Extracellular Vesicles in Glioma Cells

机译:有效地可视化和容易追踪胶质瘤细胞中的细胞外囊泡

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摘要

Extracellular vesicles (EVs) are nano-sized, membrane-bound structures secreted by cells and play critical roles in mediating intercellular signaling. EVs based on their size as well as mechanisms of biosynthesis are categorized as either microvesicles (200–1000 nm) or exosomes (30–200 nm). The EVs carry several biomolecules like proteins, DNAs, RNAs, and lipids into other cells and modulate several cellular functions. Being of very small sizes, it is very challenging to analyze them using conventional microscopes. Here, we report a new method developed by us for visualizing EVs using simple immune-fluorescence based technique, wherein the isolated EVs can be stained with fluorescently tagged antibodies to proteins present in EVs. The stained EVs can then be analyzed by using either confocal or super-resolution microscopes. Our method detailed here is equally effective in staining proteins that are present inside the EVs as well as those localized to the membranes of vesicles. By employing unique staining strategies, we have minimized the background noise and thereby improved the signal strength in confocal microscope. Using electron microscopy, we have ascertained that the structural integrity of the labeled EVs is intact. More importantly, the labeling of EVs does not affect their functionality and their localization can be tracked after its uptake by recipient cells without resorting to any conventional reporter-based strategies or lipophilic dyes. In conclusion, the method described here is a simple, sensitive and efficient immune-fluorescence based method for visualization of molecules within the EVs.
机译:细胞外囊泡(EVs)是细胞分泌的纳米级膜结合结构,在介导细胞间信号传导中起关键作用。根据电动汽车的大小和生物合成机制,电动汽车可分为微囊泡(200-1000nm)或外泌体(30-200nm)。电动汽车将几种生物分子(如蛋白质,DNA,RNA和脂质)携带到其他细胞中,并调节多种细胞功能。由于尺寸非常小,使用常规显微镜分析它们非常具有挑战性。在这里,我们报告了一种由我们开发的使用基于简单免疫荧光技术的可视化电动汽车的新方法,其中分离的电动汽车可以用针对电动汽车中存在的蛋白质的荧光标记抗体染色。然后可以使用共聚焦显微镜或超分辨率显微镜分析染色的电动汽车。此处详述的我们的方法在染色电动汽车内部以及囊泡膜上存在的蛋白质方面同样有效。通过采用独特的染色策略,我们将背景噪声降至最低,从而提高了共聚焦显微镜的信号强度。使用电子显微镜,我们已确定标记的电动汽车的结构完整性是完整的。更重要的是,EV的标记不会影响其功能,并且可以在受体细胞吸收其后跟踪其定位,而无需诉诸任何常规的基于报告基因的策略或亲脂性染料。总之,这里描述的方法是一种简单,灵敏,有效的基于免疫荧光的方法,用于可视化电动汽车内的分子。

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