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Design and fabrication of a microfluidic chip to detect tumor markers

机译:微流体芯片的设计和制作以检测肿瘤标志物

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A microfluidic chip based on capillary infiltration was designed to detect tumor markers. Serum samples flowed along a microchannel that used capillary force to drive sample injection, biochemical reactions and waste liquid collection. This permitted us to realize rapid qualitative detection of tumor markers and other biological molecules. The chip integrated a number of microfluidic functions including blood plasma separation, microvalve operation, and antibody immobilization. Using antigen–antibody reaction principles, the chip provided highly selective and sensitive detection of markers. Combining a microfluidic chip with immunoassays not only improved the antigen–antibody reaction speed, but also reduced the consumption of samples and reagents. The experimental results showed that the chip can achieve separation of trace whole blood, control of sample flow rate, and detection of alpha fetoprotein, thus providing preliminary verification of its feasibility and potential for clinical use. In summary, in this paper a cheap, mass-produced, and portable microfluidic chip for cancer detection, which has good prospects for practical use during disease diagnosis and screening is reported.
机译:设计了一种基于毛细管浸润的微流体芯片以检测肿瘤标志物。血清样本沿着微通道流动,所述微通道使用毛细管力来驱动样品注射,生化反应和废液收集。这允许我们实现肿瘤标志物和其他生物分子的快速定性检测。芯片集成了多种微流体功能,包括血浆分离,微仪操作和抗体固定。使用抗原 - 抗体反应原理,芯片提供了高度选择性和敏感的标记检测。将微流体芯片与免疫测定结合不仅改善了抗原 - 抗体反应速度,而且还降低了样品和试剂的消耗。实验结果表明,芯片可以实现痕量全血,对样品流速的控制分离,以及α胎儿蛋白的检测,从而提供初步验证其可行性和临床用药的潜力。总之,在本文中,报告了癌症检测的廉价,大规模生产和便携式的微流体芯片,其疾病诊断和筛选在疾病诊断和筛选中具有良好的前景。

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