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Development of an Automated and Sensitive Microfluidic Device for Capturing and Characterizing Circulating Tumor Cells (CTCs) from Clinical Blood Samples

机译:自动化和灵敏的微流控设备的开发,用于从临床血液样本中捕获和鉴定循环肿瘤细胞(CTC)

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摘要

Current analysis of circulating tumor cells (CTCs) is hindered by sub-optimal sensitivity and specificity of devices or assays as well as lack of capability of characterization of CTCs with clinical biomarkers. Here, we validate a novel technology to enrich and characterize CTCs from blood samples of patients with metastatic breast, prostate and colorectal cancers using a microfluidic chip which is processed by using an automated staining and scanning system from sample preparation to image processing. The Celsee system allowed for the detection of CTCs with apparent high sensitivity and specificity (94% sensitivity and 100% specificity). Moreover, the system facilitated rapid capture of CTCs from blood samples and also allowed for downstream characterization of the captured cells by immunohistochemistry, DNA and mRNA fluorescence in-situ hybridization (FISH). In a subset of patients with prostate cancer we compared the technology with a FDA-approved CTC device, CellSearch and found a higher degree of sensitivity with the Celsee instrument. In conclusion, the integrated Celsee system represents a promising CTC technology for enumeration and molecular characterization.
机译:循环肿瘤细胞(CTC)的当前分析受到设备或测定法的次优敏感性和特异性以及缺乏使用临床生物标记物表征CTC的能力的阻碍。在这里,我们验证了一种使用微流控芯片从转移性乳腺癌,前列腺癌和结肠直肠癌患者血液样本中富集和表征四氯化碳的新技术,该芯片通过使用自动染色和扫描系统从样品制备到图像处理进行处理。 Celsee系统允许以明显的高灵敏度和特异性(94%灵敏度和100%特异性)检测CTC。此外,该系统有助于从血样中快速捕获四氯化碳,并且还可以通过免疫组织化学,DNA和mRNA荧光原位杂交(FISH)对捕获的细胞进行下游表征。在一部分前列腺癌患者中,我们将这项技术与FDA批准的CTC设备CellSearch进行了比较,并发现Celsee仪器具有更高的灵敏度。总之,集成的Celsee系统代表了一种有希望的CTC技术,用于枚举和分子表征。

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