Choopara Ilada, Suea-Ngam Akkapol, Teethaisong Yothin, Howes Philip D, Schmelcher Mathias, Leelahavanichkul Asada, Thunyaharn Sudaluck, Wongsawaeng Doonyapong, deMello Andrew J, Dean Deborah, Somboonna Naraporn
Program in Biotechnology, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.
Institute for Chemical and Bioengineering, Department of Chemistry and Applied Biosciences, ETH Zürich, 8093 Zürich, Switzerland.
ACS Sens. 2021 Mar 26;6(3):742-751. doi: 10.1021/acssensors.0c01405. Epub 2021 Jan 13.
Loop-mediated isothermal amplification (LAMP) has been widely used to detect many infectious diseases. However, minor inconveniences during the steps of adding reaction ingredients and lack of simple color results hinder point-of-care detection. We therefore invented a fluorometric paper-based LAMP by incorporating LAMP reagents, including a biotinylated primer, onto a cellulose membrane paper, with a simple DNA fluorescent dye incubation that demonstrated rapid and accurate results parallel to quantitative polymerase chain reaction (qPCR) methods. This technology allows for instant paper strip detection of methicillin-resistant (MRSA) in the laboratory and clinical samples. MRSA represents a major public health problem as it can cause infections in different parts of the human body and yet is resistant to commonly used antibiotics. In this study, we optimized LAMP reaction ingredients and incubation conditions following a central composite design (CCD) that yielded the shortest reaction time with high sensitivity. These CCD components and conditions were used to construct the paper-based LAMP reaction by immobilizing the biotinylated primer and the rest of the LAMP reagents to produce the ready-to-use MRSA diagnostic device. Our paper-based LAMP device could detect as low as 10 ag (equivalent to 1 copy) of the MRSA gene mecA within 36-43 min, was evaluated using both laboratory (individual cultures of MRSA and non-MRSA bacteria) and clinical blood samples to be 100% specific and sensitive compared to qPCR results, and had 35 day stability under 25 °C storage. Furthermore, the color readout allows for quantitation of MRSA copies. Hence, this device is applicable for point-of-care MRSA detection.
环介导等温扩增技术(LAMP)已被广泛用于检测多种传染病。然而,添加反应成分步骤中的一些小不便以及缺乏简单的颜色结果显示妨碍了即时检测。因此,我们通过将包括生物素化引物在内的LAMP试剂整合到纤维素膜纸上,并进行简单的DNA荧光染料孵育,发明了一种基于荧光纸的LAMP技术,其结果显示快速且准确,可与定量聚合酶链反应(qPCR)方法相媲美。这项技术能够在实验室和临床样本中对耐甲氧西林金黄色葡萄球菌(MRSA)进行即时纸条检测。MRSA是一个重大的公共卫生问题,因为它可在人体不同部位引发感染,且对常用抗生素具有耐药性。在本研究中,我们按照中心复合设计(CCD)优化了LAMP反应成分和孵育条件,从而以高灵敏度实现了最短反应时间。这些CCD成分和条件被用于构建基于纸的LAMP反应,即将生物素化引物和其余LAMP试剂固定化,以生产即用型MRSA诊断设备。我们基于纸的LAMP设备能够在36 - 43分钟内检测低至10 ag(相当于1个拷贝)的MRSA基因mecA,使用实验室样本(MRSA和非MRSA细菌的单独培养物)和临床血液样本进行评估,与qPCR结果相比,其特异性和灵敏度均为100%,并且在25°C储存条件下具有35天的稳定性。此外,颜色读数允许对MRSA拷贝进行定量。因此,该设备适用于即时MRSA检测。