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Calibrant-loaded paper-based analytical devices for standard addition quantitative assays

机译:装有校准液的纸质分析设备,用于标准加法定量分析

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摘要

This article describes a new approach for performing analytical assays on paper-based analytical devices that relies on the principles of multiple standard additions calibration, and uses calibrant-loaded paper devices. Calibrant-loaded devices have multiple sensing areas pre-loaded with an excess amount of the necessary colorimetric reagents and known amounts (standard solutions) of the tested analyte; thus, a colored product is developed before analysis in each sensing area. After sample addition, the analytical signal from each sensing area corresponds to the total concentration of the analyte, which is the sum of the concentration of the analyte in the tested sample plus the known amount of the analyte prestored in the device. The combined signal retrieved from each sensing zone is plotted to form a standard addition calibration curve that is used to calculate the concentration of the analyte in the sample using linear or non-linear models (i.e., first or higher order polynomials). This new approach could reduce the influence of matrix effects, paper inhomogeneity and environmental conditions on the results, and it could simplify the analysis as it may eliminate the steps associated with on-spot calibration that should ideally be performed using standard solutions that are prepared or transported in-situ. The utility and applicability of this approach is demonstrated as proof-of-concept on five assays (i.e., for the determination of iron, protein, hydrogen peroxide, acetic acid and carbonate ions) that use different reactions (i.e. complexation, oxidation and neutralization). This work provides a demonstration of a multiple standard addition methodology applied on calibrant-loaded paper-based analytical devices and illustrate its use as a sample-in result-out tool for point-of-use applications.
机译:本文介绍了一种基于纸质分析设备的新分析方法,该方法依赖于多种标准添加物校准的原理,并使用装有校准剂的纸质设备。装有校准物的设备具有多个传感区域,这些区域预装有过量的必要比色试剂和已知量(标准溶液)的被测分析物;因此,在每个感测区域进行分析之前,都会显色有色产品。在添加样品之后,来自每个感应区域的分析信号对应于分析物的总浓度,该总浓度是被测样品中分析物的浓度加上预先存储在设备中的已知量的分析物的总和。绘制从每个感测区获取的组合信号以形成标准附加校准曲线,该标准附加校准曲线用于使用线性或非线性模型(即一阶或更高阶多项式)来计算样品中分析物的浓度。这种新方法可以减少基体效应,纸张不均匀性和环境条件对结果的影响,并且可以简化分析,因为它可以消除与现场校准有关的步骤,这些步骤最好使用已准备好的标准溶液或标准溶液进行。原位运输。这种方法的实用性和适用性在使用不同反应(即络合,氧化和中和)的五种测定法(即用于测定铁,蛋白质,过氧化氢,乙酸和碳酸根离子的测定)中得到了概念验证。 。这项工作演示了在校准物加载的纸质分析设备上应用的多种标准添加方法,并说明了其用作使用点应用程序的进样结果输出工具。

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