Institute of Physical and Theoretical Chemistry (IPTC), Eberhard Karls Universität Tübingen, Auf der Morgenstelle 18, 72076 Tübingen, Germany.
Biosensors (Basel). 2023 Aug 25;13(9):849. doi: 10.3390/bios13090849.
A new method to transfer the standard addition procedure for concentration determination to immunoassays with non-linear calibration curves was developed. The new method was successfully applied to simulated data and benchmarked against a state-of-the-art algorithm, showing a significantly improved performance with improvement factors between 2 and 192. The logit function was used to transform the immunoassay signal response of test samples spiked with known analyte concentrations. The relationship between logit(signal) and log-transformed estimated total analyte concentration is linear if the estimated total analyte concentration is correct. Finally, the new method was validated experimentally using different assays in varying, relevant complex matrices, such as serum, saliva, and milk. Different concentrations of testosterone and amitriptyline between 0.05 and 3.0 µg L were quantified using a binding inhibition assay in combination with reflectometric interference spectroscopy (RIfS) as the transduction principle. The sample concentration was calculated using a numerical method. Samples could be quantified with recoveries between 70 and 118%. The standard addition method accounts for individual matrix interference on the immunoassay by spiking the test sample itself. Although the experiments were carried out using RIfS, the method can be applied to any immunoassay that meets the analytical requirements.
开发了一种将标准加入程序从浓度测定转移到具有非线性校准曲线的免疫分析的新方法。新方法成功应用于模拟数据,并与最先进的算法进行了基准测试,显示出显著改善的性能,改进因子在 2 到 192 之间。使用对数函数转换测试样品中加入已知分析物浓度的免疫分析信号响应。如果估计的总分析物浓度正确,则 logit(信号)与对数转换的估计总分析物浓度之间的关系是线性的。最后,使用不同的测定法在不同的相关复杂基质(如血清、唾液和牛奶)中进行实验验证了新方法。使用结合抑制测定法并结合反射干涉光谱学(RIfS)作为转换原理,对不同浓度的睾酮和阿米替林在 0.05 到 3.0 µg L 之间进行了定量。使用数值方法计算样品浓度。回收率在 70%到 118%之间。标准加入法通过向测试样品本身中加入标准来补偿免疫分析中的个体基质干扰。尽管实验是使用 RIfS 进行的,但该方法可应用于满足分析要求的任何免疫分析。