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Integrated Microfluidic Device for Serum Biomarker Quantitation Using Either Standard Addition or a Calibration Curve

机译:使用标准加法或校准曲线定量血清生物标志物的集成微流控设备

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Detection and accurate quantitation of biomarkers such as alpha-fetoprotein (AFP) can be a key aspect of early stage cancer diagnosis. Microfluidic devices provide attractive analysis capabilities, including low sample and reagent consumption, as well as short assay times. However, to date microfluidic analyzers have relied almost exclusively on calibration curves for sample quantitation, which can be problematic for complex mixtures such as human serum. We have fabricated integrated polymer microfluidic systems that can quantitatively determine fluorescently labeled AFP in human serum using either the method of standard addition or a calibration curve. Our microdevices couple an immunoaffinity purification step with rapid microchip electrophoresis separation in a laser-induced fluorescence detection system, all under automated voltage control in a miniaturized polymer microchip. In conjunction with laser-induced fluorescence detection, these systems can quantify AFP at approx1 ng/mL levels in approx10 (mu)L of human serum in a few tens of minutes. Our polymer microdevices have been applied in determining AFP in spiked serum samples. These integrated microsystems offer excellent potential for rapid, simple, and accurate biomarker quantitation in a point-of-care setting.
机译:对生物标记物(例如甲胎蛋白)的检测和准确定量可能是早期癌症诊断的关键方面。微流体设备提供了有吸引力的分析能力,包括低的样品和试剂消耗量以及较短的分析时间。然而,迄今为止,微流体分析仪几乎完全依赖于用于样品定量的校准曲线,这对于诸如人血清之类的复杂混合物可能是有问题的。我们已经制造出集成的聚合物微流体系统,该系统可以使用标准添加方法或校准曲线定量测定人血清中荧光标记的AFP。我们的微设备将免疫亲和纯化步骤与激光诱导的荧光检测系统中的快速微芯片电泳分离相结合,所有这些操作均在小型聚合物微芯片中实现自动电压控制。结合激光诱导的荧光检测,这些系统可以在几十分钟内以大约1 ng / mL的水平在大约10μL的人血清中定量AFP。我们的聚合物微器件已用于测定加标血清样品中的AFP。这些集成的微系统为即时护理环境中的快速,简单和准确的生物标记定量提供了极好的潜力。

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