Agarwal Priyanka, Toley Bhushan J
Department of Chemical Engineering, Indian Institute of Science, Bengaluru, Karnataka 560012, India.
Center for Biosystems Science and Engineering, Indian Institute of Science, Bengaluru, Karnataka 560012, India.
ACS Meas Sci Au. 2022 Mar 28;2(4):317-324. doi: 10.1021/acsmeasuresciau.2c00005. eCollection 2022 Aug 17.
Factors that affect the performance of the nucleic acid lateral flow assay (NALFA) have not been well studied. In this work, we identify two important phenomena that negatively affect signal intensities during the detection of PCR products using NALFA: (i) the presence of unreacted PCR primers, and (ii) the presence of excess PCR amplicons. This is the first report that highlights the negative effect of unreacted PCR primers on NALFA. The negative effect of excess amplicons, while not explicitly reported for NALFAs, emanates from an identical phenomenon in lateral flow immunoassays known as the "hook effect". We show that the above effects may be alleviated by increasing the concentration of capture antibodies at the test line and the concentration of reporter moieties (gold nanoparticles). To demonstrate these, we utilized a PCR assay in which both primers were end-labeled, to generate dually end-labeled (bi-labeled) PCR amplicons of 230 bp length. To provide mechanistic understanding of these phenomena, we present the first transport-reaction model of NALFA, the results of which qualitatively matched all observed phenomena. Based on these results, we provide recommendations for the optimal design of PCR for NALFA detection.
影响核酸侧向流动分析(NALFA)性能的因素尚未得到充分研究。在这项工作中,我们识别出了在使用NALFA检测PCR产物过程中对信号强度产生负面影响的两个重要现象:(i)未反应的PCR引物的存在,以及(ii)过量PCR扩增子的存在。这是首篇强调未反应的PCR引物对NALFA产生负面影响的报告。过量扩增子的负面影响,虽然尚未在NALFA中明确报道,但源自侧向流动免疫分析中一种被称为“钩状效应”的相同现象。我们表明,通过增加检测线处捕获抗体的浓度和报告基团(金纳米颗粒)的浓度,可以减轻上述影响。为了证明这些,我们利用了一种PCR分析方法,其中两条引物都进行了末端标记,以生成长度为230 bp的双末端标记(双标记)PCR扩增子。为了从机制上理解这些现象,我们提出了首个NALFA的传输 - 反应模型,其结果在定性上与所有观察到的现象相匹配。基于这些结果,我们为用于NALFA检测的PCR的优化设计提供了建议。