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Rapid and Low-Cost CRP Measurement by Integrating a Paper-Based Microfluidic Immunoassay with Smartphone (CRP-Chip)

机译:通过将纸质微流免疫分析与智能手机(CRP-Chip)集成在一起,可以快速,低成本地测量CRP

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Traditional diagnostic tests for chronic diseases are expensive and require a specialized laboratory, therefore limiting their use for point-of-care (PoC) testing. To address this gap, we developed a method for rapid and low-cost C-reactive protein (CRP) detection from blood by integrating a paper-based microfluidic immunoassay with a smartphone (CRP-Chip). We chose CRP for this initial development because it is a strong biomarker of prognosis in chronic heart and kidney disease. The microfluidic immunoassay is realized by lateral flow and gold nanoparticle-based colorimetric detection of the target protein. The test image signal is acquired and analyzed using a commercial smartphone with an attached microlens and a 3D-printed chip–phone interface. The CRP-Chip was validated for detecting CRP in blood samples from chronic kidney disease patients and healthy subjects. The linear detection range of the CRP-Chip is up to 2 μg/mL and the detection limit is 54 ng/mL. The CRP-Chip test result yields high reproducibility and is consistent with the standard ELISA kit. A single CRP-Chip can perform the test in triplicate on a single chip within 15 min for less than 50 US cents of material cost. This CRP-Chip with attractive features of low-cost, fast test speed, and integrated easy operation with smartphones has the potential to enable future clinical PoC chronic disease diagnosis and risk stratification by parallel measurements of a panel of protein biomarkers.
机译:传统的慢性疾病诊断测试价格昂贵,需要专门的实验室,因此限制了它们在即时医疗(PoC)测试中的使用。为了解决这一空白,我们开发了一种通过将纸质微流免疫分析与智能手机(CRP-Chip)集成在一起,从血液中快速,低成本检测C反应蛋白(CRP)的方法。我们选择CRP进行此初始开发是因为它是慢性心脏病和肾脏疾病预后的强有力的生物标记。通过侧向流动和基于金纳米颗粒的比色检测靶蛋白来实现微流体免疫测定。测试图像信号是使用带有附加微透镜和3D打印芯片-电话接口的商用智能手机获取和分析的。验证了CRP芯片可检测慢性肾脏病患者和健康受试者血液样本中的CRP。 CRP-Chip的线性检测范围高达2μg/ mL,检测极限为54 ng / mL。 CRP-Chip测试结果具有很高的重现性,并且与标准ELISA试剂盒一致。单个CRP芯片可以在15分钟内在一个芯片上进行三次重复测试,而材料成本不到50美分。这种CRP芯片具有低成本,快速测试速度以及与智能手机集成的简便操作等吸引人的功能,具有潜力,可以通过并行测量一组蛋白质生物标志物来实现未来的临床PoC慢性疾病诊断和风险分层。

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