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Precision Microfilters as an all in one System for Multiplex Analysis of Circulating Tumor Cells

机译:精密微过滤器作为多系统合一系统用于循环肿瘤细胞的多重分析

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摘要

Enumeration of circulating tumor cells (CTCs) from cancer patient blood is an established diagnostic assay used to evaluate patient status as a singleplex test. However, in the coming age of personalized medicine, multiplex analysis of patient CTCs, including proteomic and genomic techniques, will have to be integrated with CTC isolation platform technologies. Advancements in microfabrication have demonstrated that CTCs can be isolated and analyzed using microfluidic lab-on-a-chip devices. However, to date, most microfluidic devices are either still in the development phase, not applicable to all clinical tests, or are not commercially available. To overcome these discrepancies, we describe an all-in-one device for the isolation and multiplexing of clinically applicable CTC assays. Microfilters present an ideal lab-on-a-chip platform for analysis of CTCs as non-toxic and inert materials allow for a multitude of tests from cell growth through clinical staining techniques, all without background interference. Lithographically fabricated microfilters, can be made with high porosity, precise pore dimensions, arrayed pore distribution, and optimized for CTC size-based isolation. In this study we describe microfilter use in isolation and in situ analysis of CTCs using multiple sequential techniques including culture, FISH, histopathological analysis, H&E staining, photobleaching and re-staining. Further, as a proof of principle, we then describe the ability to quantitatively release patient derived CTCS from the microfilters for potential use in downstream genomic/proteomic analysis.
机译:从癌症患者的血液中枚举循环肿瘤细胞(CTC)是一种成熟的诊断检测方法,用于评估患者的状况,作为单重检测。但是,在个性化医学的时代即将来临,对患者CTC的多重分析(包括蛋白质组学和基因组技术)将必须与CTC隔离平台技术集成在一起。微加工技术的进步表明,可以使用微流控芯片实验室设备对CTC进行分离和分析。然而,迄今为止,大多数微流体装置要么仍处于开发阶段,不适用于所有临床测试,要么无法商业购买。为了克服这些差异,我们描述了一种用于临床上可应用的CTC分析的分离和复用的多合一设备。微型过滤器提供了一种理想的单芯片实验室平台,可用于分析CTC,因为无毒和惰性材料可以从细胞生长到临床染色技术进行多种测试,而没有背景干扰。光刻制造的微过滤器可以制成高孔隙率,精确的孔尺寸,排列的孔分布,并针对基于CTC尺寸的分离进行了优化。在这项研究中,我们描述了微滤器在CTC的分离和原位分析中的应用,并使用了多种顺序技术,包括培养,FISH,组织病理学分析,H&E染色,光漂白和重新染色。此外,作为原理上的证明,我们然后描述了从微滤器中定量释放患者衍生的CTCS的能力,以潜在地用于下游基因组/蛋白质组学分析。

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