An integrated microfluidic platform for cholangiocarcinoma diagnosis from clinical bile juice samples by utilizing multiple affinity reagents

Tsung-Han Lu, N. Chiang, Chien-Jui Huang, P. Gopinathan, Hsiu-Chi Tu, Yi-Cheng Tsai, Y. Shan, S. Hung, Gwo-Bin Lee
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Abstract

Cholangiocarcinoma (CCA) is a lethal disease owing to its difficulty to be diagnosed at early stages and lack of effective treatment. To improve the accuracy of early diagnosis of CCA, one of the promising approaches is to use CCA-specific affinity reagents to detect CCA cells by liquid biopsy. In this study, bile juice, a body fluid close to lesions, was used as a clinical sample for CCA cell isolation and detection. Moreover, a novel microfluidic chip was designed and fabricated to detect CCA cells in the bile juice by using three types of affinity reagents. Experimental results showed that the three affinity reagents could capture CCA tumor cells in patients’ bile juice (with a volume of only 3 mL) within 120 min. This microfluidic system may serve as a promising tool for detecting CCA in clinical settings.
利用多种亲和试剂对临床胆汁液样本进行胆管癌诊断的集成微流控平台
胆管癌早期诊断困难,缺乏有效的治疗方法,是一种致命的疾病。为了提高CCA早期诊断的准确性,利用CCA特异性亲和试剂通过液体活检检测CCA细胞是一种很有前途的方法。本研究采用靠近病变的体液胆汁液作为CCA细胞分离检测的临床样本。设计并制作了一种新型微流控芯片,利用三种亲和试剂检测胆汁液中的CCA细胞。实验结果表明,三种亲和试剂可在120分钟内捕获患者胆汁液(体积仅为3 mL)中的CCA肿瘤细胞。该微流控系统有望成为临床检测CCA的一种有前景的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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