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Fluorescence labelling of extracellular vesicles using a novel thiol-based strategy for quantitative analysis of cellular delivery and intracellular traffic

机译:使用基于新的硫醇的抗体囊泡标记荧光标记用于细胞输送和细胞内交通的定量分析

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摘要

Extracellular vesicles, including exosomes, are naturally derived nanovesicles generated in and released by numerous cell types. As extracellular entities they have the capacity to interact with neighbouring cells and distant tissues and affect physiological processes as well as being implicated in numerous diseases including tumorigenesis and neurodegeneration. They are also under intense investigation as delivery vectors for biotherapeutics. The ways in which EVs interact with recipient cells to influence cell physiology and deliver a macromolecular payload are at the early stages of exploration. A significant challenge within these studies is the ability to label EVs directly or indirectly with fluorescent probes to allow visualization without compromising functionality. Here, we present a thiol-based fluorescence labelling method allowing comprehensive analysis of the cellular uptake of prostate cancer derived EVs in live cells using confocal microscopy. Labelling of the EVs in this way did not influence their size and had no effect on their ability to induce differentiation of lung fibroblasts to myofibroblasts. For endocytosis analyses, depletion of key endocytic proteins and the use of chemical inhibitors (Dynasore, EIPA, Rottlerin and IPA-3) indicated that fluid-phase endocytosis and/or macropinocytosis was involved in EV internalisation. Over a period of six hours EVs were observed to increasingly co-localise with lysosomes, indicating a possible termination point following internalisation. Overall this method provides new opportunities for analysing the cellular dynamics of EVs as biological entities affecting cell and whole body physiology as well as investigating their potential as drug delivery vectors.
机译:胞外囊泡,包括外来体,在生成和多种细胞类型释放的天然衍生的纳米囊泡。作为细胞外实体它们必须与邻近细胞和远处组织相互作用,并影响生理过程,以及在许多疾病,包括肿瘤发生和神经变性受到牵连的能力。他们也正在紧张调查作为生物治疗药物递送载体。其中互动与受体细胞电动车来影响细胞的生理和交付大分子有效载荷的方式是在探索的初期阶段。这些研究中的一显著的挑战是直接或间接地标记与电动车的荧光探针,使可视化不影响功能的能力。在这里,我们提出了一种基于硫醇的荧光标记方法让前列腺癌来源的电动车在使用共焦显微镜活细胞的细胞摄取的综合分析。在这样的电动汽车的标记不影响它们的大小和对他们的诱导肺成纤维细胞分化成肌成纤维细胞的能力没有影响。对于细胞内吞作用的分析,关键的内吞蛋白质的消耗和使用化学抑制剂(Dynasore,EIPA,粗糠柴毒素和IPA-3)的表示,流体相的内吞作用和/或巨胞饮参与EV内化。历时六个小时电动车观察到越来越多地共定位与溶酶体,这表明内化之后的可能的终止点。总体来说,这一方法用于分析电动汽车的细胞动力学的影响细胞和全身的生理以及调查其作为药物传递载体的潜在生物实体提供了新的机遇。

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