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Microfluidic isolation of cancer-cell-derived microvesicles from hetergeneous extracellular shed vesicle populations

机译:从异质细胞外棚囊泡种群中微提取癌细胞来源的微囊泡

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摘要

Extracellular shed vesicles, including exosomes and microvesicles, are disseminated throughout the body and represent an important conduit of cell communication. Cancer-cell-derived microvesicles have potential as a cancer biomarker as they help shape the tumor microenvironment to promote the growth of the primary tumor and prime the metastatic niche. It is likely that, in cancer cell cultures, the two constituent extracellular shed vesicle subpopulations, observed in dynamic light scattering, represent an exosome population and a cancer-cell-specific microvesicle population and that extracellular shed vesicle size provides information about provenance and cargo. We have designed and implemented a novel microfluidic technology that separates microvesicles, as a function of diameter, from heterogeneous populations of cancer-cell-derived extracellular shed vesicles. We measured cargo carried by the microvesicle subpopulation processed through this microfluidic platform. Such analyses could enable future investigations to more accurately and reliably determine provenance, functional activity, and mechanisms of transformation in cancer.
机译:胞外脱落的囊泡,包括外泌体和微囊泡,在整个人体中传播,代表了细胞通讯的重要渠道。癌细胞衍生的微囊泡有潜力作为癌症生物标记物,因为它们有助于塑造肿瘤微环境,从而促进原发性肿瘤的生长并引发转移性生态位。在癌细胞培养物中,在动态光散射中观察到的两个组成的细胞外脱落囊泡亚群可能代表了一个外来体种群和一个癌细胞特异的微囊泡种群,而细胞外脱落囊泡的大小提供了有关来源和货物的信息。我们已经设计并实现了一种新颖的微流控技术,该技术可将微囊泡(作为直径的函数)与癌细胞衍生的细胞外脱落囊泡的异质群体分开。我们测量了通过该微流体平台处理的微泡亚群携带的货物。这样的分析可以使将来的研究能够更准确和可靠地确定癌症的起源,功能活性和转化机制。

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