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Analysis of Stochastic Time Response of Microfluidic Biosensors in the Case of Competitive Adsorption of Two Analytes

机译:两种分析物竞争吸附情况下微流控生物传感器的随机时间响应分析

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A model of stochastic time response of adsorption-based microfluidic biosensors is presented, that considers the competitive adsorption-desorption process coupled with mass transfer of two analytes. By using the model we analyze the expected value of the adsorbed particles number of each analyte, which determine the sensor response kinetics. The comparison with the case when only one analyte exists is used for investigation of the influence of competitive adsorption on the sensor response. The response kinetics analyzed by using the stochastic model is compared with the kinetics predicted by the deterministic response model. The results are useful for optimization of microanosensors intended for detection of substances in ultra-low concentrations in complex samples.
机译:提出了一种基于吸附的微流体生物传感器的随机时间响应模型,该模型考虑了竞争性吸附-解吸过程以及两种分析物的质量转移。通过使用该模型,我们分析了每种分析物的吸附颗粒数的期望值,从而确定了传感器的响应动力学。与仅存在一种分析物的情况进行比较,以研究竞争性吸附对传感器响应的影响。将使用随机模型分析的响应动力学与确定性响应模型预测的动力学进行比较。该结果对于优化用于检测复杂样品中超低浓度物质的微/纳米传感器很有用。

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