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首页> 外文期刊>Biomedical Microdevices >Combined immunomagnetic capture coupled with ultrasensitive plasmonic detection of circulating tumor cells in blood
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Combined immunomagnetic capture coupled with ultrasensitive plasmonic detection of circulating tumor cells in blood

机译:结合免疫磁捕获结合超灵敏等离子体检测血液中循环肿瘤细胞

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摘要

We demonstrate enhanced on-chip circulating tumor cell (CTC) detection through the incorporation of plasmonic-enhanced near-infrared (NIR) fluorescence screening. Specifically, the performance of plasmonic gold coated chips was evaluated on our previously reported immunomagnetic CTC capture system and compared to the performance of a regular chip. Three main performance metrics were evaluated: capture efficiency, capture reproducibility, and clinical efficacy. Use of the plasmonic chip to capture SK-BR-3 cells in PBS, resulted in a capture efficiency of 82%, compared to 76% with a regular chip. Both chips showed excellent capture reproducibility for all three cells lines evaluated (MCF-7, SK-BR-3, Colo 205) in both PBS and peripheral blood, with R-2 values ranging from 0.983 to 0.996. Finally, performance of the plasmonic chip was evaluated on thirteen peripheral blood samples in patients with both breast and prostate cancer. The regular chip detected 2-8 cells per 5mL of blood, while the plasmonic chip detected 8-85 cells per 5mL of blood in parallel samples. In summary, we successfully demonstrate improved CTC capture and detection capabilities through use of plasmonic-enhanced near-infrared (NIR) fluorescence screening in both in vitro and ex vivo experiments. This work not only has the potential to improve clinical outcomes though improved CTC analysis, but also demonstrates successful interface design between plasmonic materials and cell capture for bioanalytical applications.
机译:通过结合等离子体增强的近红外(NIR)荧光筛查,我们证明了增强的片上循环肿瘤细胞(CTC)检测。具体而言,在我们先前报道的免疫磁性CTC捕获系统上评估了等离子镀金芯片的性能,并将其与常规芯片的性能进行了比较。评估了三个主要性能指标:捕获效率,捕获可重复性和临床疗效。使用等离激元芯片捕获PBS中的SK-BR-3细胞,捕获效率为82%,而常规芯片为76%。两种芯片均在PBS和外周血中对评估的所有三个细胞系(MCF-7,SK-BR-3,Colo 205)均显示出优异的捕获再现性,R-2值介于0.983至0.996之间。最后,对乳腺癌和前列腺癌患者的13份外周血样本评估了等离子芯片的性能。常规芯片每5mL血液中可检测2-8个细胞,而等离子芯片在平行样品中每5mL血液中可检测8-85个细胞。总之,在体外和离体实验中,我们通过使用等离子体增强的近红外(NIR)荧光筛选成功地证明了改进的CTC捕获和检测能力。这项工作不仅有可能通过改进的CTC分析来改善临床结果,而且还证明了用于生物分析应用的等离激元材料和细胞捕获之间成功的界面设计。

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