State Key Laboratory of Food Science and Technology , Nanchang University , Nanchang 330047 , P. R. China.
Jiangxi-OAI Joint Research Institute , Nanchang University , Nanchang 330047 , P. R. China.
J Agric Food Chem. 2019 Aug 14;67(32):9022-9031. doi: 10.1021/acs.jafc.9b03222. Epub 2019 Aug 5.
The quantitative multiplex immunochromatographic assay (mICA) has received an increasing amount of attention in multitarget detection. However, the quantitative results in the reported mICAs were obtained by recording the signals on the test lines that with which various analyte-independent factors readily interfere, resulting in inaccurate quantitation. The ratiometric strategy using the T/C value (ratios of signals on the test line to those of the control line) for signal correction can effectively circumvent these issues to enable more accurate detection. Herein, we present for the first time a novel ratiometric mICA strip with multiple T lines for the simultaneous quantitative detection of aflatoxin B (AFB), fumonisin B (FB), and ochratoxin A (OTA) using highly luminescent quantum dot nanobeads (QBs) as enhanced signal reporters. To achieve reliable ratiometric signal output, a biotin-streptavidin system was introduced to replace the conventional anti-mouse IgG antibody for reliable reference signals on the control line that are completely independent of the signal probe and analyte. By using stable T/C values as quantitative signals, our proposed QB-mICA method can successfully detect three mycotoxins with concentrations as low as 1.65 pg/mL for AFB, 1.58 ng/mL for FB, and 0.059 ng/mL for OTA. The detection performance of the developed QB-mICA strip, including precision, specificity, and reliability, was further evaluated using artificially contaminated cereal samples. The results demonstrate the improved accuracy and reliability of quantitative determination by comparison with the anti-mouse IgG antibody. Thus, this work provides a promising strategy for developing a ratiometric mICA method for accurately quantifying multiple analytes using the biotin-SA system, opening up a new direction in quantitative mICAs.
定量多重免疫层析分析(mICA)在多目标检测中受到了越来越多的关注。然而,报道的 mICA 中的定量结果是通过记录测试线上的信号获得的,而这些信号很容易受到各种与分析物无关的因素的干扰,导致定量不准确。使用 T/C 值(测试线上的信号与对照线上的信号之比)进行信号校正的比色策略可以有效地避免这些问题,从而实现更准确的检测。在这里,我们首次提出了一种新颖的比率型 mICA 条带,该条带带有多个 T 线,用于使用高发光量子点纳米珠(QBs)作为增强信号报告物同时定量检测黄曲霉毒素 B(AFB)、伏马菌素 B(FB)和赭曲霉毒素 A(OTA)。为了实现可靠的比色信号输出,引入了生物素-链霉亲和素系统来替代传统的抗小鼠 IgG 抗体,以获得完全独立于信号探针和分析物的对照线上可靠的参考信号。通过使用稳定的 T/C 值作为定量信号,我们提出的 QB-mICA 方法可以成功检测到三种真菌毒素,其浓度分别为 AFB 低至 1.65 pg/mL、FB 低至 1.58 ng/mL 和 OTA 低至 0.059 ng/mL。使用人工污染的谷物样品进一步评估了所开发的 QB-mICA 条带的检测性能,包括精密度、特异性和可靠性。与使用抗小鼠 IgG 抗体相比,结果表明定量测定的准确性和可靠性得到了提高。因此,这项工作为使用生物素-SA 系统开发用于准确定量多种分析物的比率型 mICA 方法提供了一种有前途的策略,为定量 mICA 开辟了新的方向。