Singapore-MIT Alliance for Research and Technology (SMART) Centre , 1 CREATE Way , Singapore 138602.
ACS Sens. 2020 Feb 28;5(2):308-312. doi: 10.1021/acssensors.9b02424. Epub 2020 Feb 3.
Loop-mediated isothermal amplification (LAMP) is an appealing method for low-cost, point-of-care nucleic acid diagnostic assays due to high sensitivity, minimal equipment requirements, and compatibility with user-friendly colorimetric detection methods. The enhanced sensitivity LAMP offers comes with vulnerability to cross-contamination, where negative samples are exposed to minute amounts of nucleic acids from positive samples. These amounts are insignificant in less sensitive amplification methods, but visible when LAMP is paired with common colorimetric methods. Here, we examined the use of eosin photopolymerization, a tunable reaction, for colorimetric detection of LAMP products to reduce this false positive risk. Using eosin and biotin end-labeled primers, we successfully amplified target regions of the (MTB) genome using PCR and LAMP, captured amplicons on streptavidin-coated cellulose, and detected DNA targets via eosin photopolymerization, producing a bright pink color only if MTB DNA was present in the sample. Consistent with previous reports, the LAMP-based method exhibited high background signal, but tuning the illumination time for the photopolymerization reaction allowed readouts from samples with no added MTB DNA to remain blank and visually distinct from pink positives. This method yielded limits of detection of 30 and 300 copies/μL for LAMP and PCR amplification, respectively. When confronted with boiled MTB culture samples, this method gave clear positive readouts, compared to negligible signal from other boiled culture samples. This new method of LAMP colorimetric detection has the potential to increase the utility of LAMP as a nucleic acid assay technique by mitigating sensitivity to cross-contamination.
环介导等温扩增(LAMP)由于其高灵敏度、最小设备要求以及与用户友好的比色检测方法的兼容性,是一种用于低成本、即时核酸诊断检测的有吸引力的方法。LAMP 提供的增强灵敏度伴随着易交叉污染的弱点,其中阴性样本会暴露于来自阳性样本的少量核酸。在灵敏度较低的扩增方法中,这些量微不足道,但当 LAMP 与常见的比色方法结合使用时,就会变得可见。在这里,我们研究了使用曙红光聚合,一种可调反应,用于减少这种假阳性风险的 LAMP 产物的比色检测。使用曙红和生物素末端标记的引物,我们成功地使用 PCR 和 LAMP 扩增了结核分枝杆菌(MTB)基因组的靶区域,将扩增子捕获到链霉亲和素包被的纤维素上,并通过曙红光聚合检测 DNA 靶标,只有在样品中存在 MTB DNA 时才会产生鲜艳的粉红色。与之前的报告一致,基于 LAMP 的方法显示出高背景信号,但调整光聚合反应的照射时间允许没有添加 MTB DNA 的样品的读数保持空白,并与粉红色阳性明显区分开来。该方法对 LAMP 和 PCR 扩增的检测限分别为 30 和 300 拷贝/μL。当遇到煮沸的 MTB 培养样本时,与其他煮沸的培养样本的可忽略的信号相比,该方法给出了清晰的阳性读数。这种新的 LAMP 比色检测方法有可能通过减轻对交叉污染的敏感性来提高 LAMP 作为核酸检测技术的实用性。