A.N. Bach Institute of Biochemistry, Research Centre of Biotechnology of the Russian Academy of Sciences, 119071, Moscow, Russia.
A.N. Bach Institute of Biochemistry, Research Centre of Biotechnology of the Russian Academy of Sciences, 119071, Moscow, Russia.
Talanta. 2020 Apr 1;210:120616. doi: 10.1016/j.talanta.2019.120616. Epub 2019 Dec 6.
We propose nucleic acid lateral flow assay (LFA) coupled with reverse transcription recombinase polymerase amplification (RT-RPA) resulting from step-by-step multiparametric adjustments to both RT-RPA reactions and LFA interactions. The assay was realized for RNA virus detection using the example of potato virus X (PVX), a dangerous phytopathogen. The assay stages were adjusted for sensitive detection. (1) DNA target was designed and verified. A fragment (146 bp) of coat protein gene (gp5) and biotin-/fluorescein-labeled forward/reverse primers were chosen to produce target amplicons. (2) In a test strip, the construction advantage of the realization of the highest affinity interaction (biotin-streptavidin in our research) through gold nanoparticle conjugate (streptavidin immobilized on the GNP surface) was demonstrated. (3) RPA with reverse transcription was adjusted including primer concentration, order of components' mixing, and reaction temperature. Due to the adjustments, the assay was able to detect 0.14 ng PVX per g potato leaves at 30 min. The PVX assay was 260 times more sensitive than conventional lateral flow assay based on antibodies and demonstrated the same sensitivity as PCR detection. The proposed adjustments are applicable for ultrasensitive and rapid detection of various RNA viruses.
我们提出了一种核酸侧向流动分析(LFA)与逆转录重组酶聚合酶扩增(RT-RPA)相结合的方法,这是通过对 RT-RPA 反应和 LFA 相互作用进行逐步的多参数调整而实现的。该方法用于 RNA 病毒的检测,以马铃薯 X 病毒(PVX)为例,这是一种危险的植物病原体。该检测方法经过了调整以实现灵敏检测。(1)设计并验证了 DNA 靶标。选择外壳蛋白基因(gp5)的一个片段(146 bp)和生物素/荧光标记的正向/反向引物,以产生目标扩增子。(2)在测试条上,通过金纳米粒子缀合物(固定在 GNP 表面上的链霉亲和素)展示了实现最高亲和力相互作用(在我们的研究中为生物素-链霉亲和素)的构建优势。(3)调整了带有逆转录的 RPA,包括引物浓度、组分混合的顺序和反应温度。由于这些调整,该检测方法能够在 30 分钟内检测到每克马铃薯叶片中 0.14 ng 的 PVX。该 PVX 检测方法比基于抗体的常规侧向流动检测方法灵敏 260 倍,与 PCR 检测的灵敏度相同。所提出的调整适用于各种 RNA 病毒的超灵敏和快速检测。