Institute of Molecular Biology and Biotechnology, Foundation for Research and Technology-Hellas, 100 N. Plastira Str., 70013, Heraklion, Greece.
BIOPIX DNA TECHNOLOGY PC, Science and Technology Park of Crete, 100 N. Plastira Str., 70013, Heraklion, Greece.
Sci Rep. 2022 Mar 8;12(1):3775. doi: 10.1038/s41598-022-06632-7.
Loop-mediated isothermal amplification is known for its high sensitivity, specificity and tolerance to inhibiting-substances. In this work, we developed a device for performing real-time colorimetric LAMP combining the accuracy of lab-based quantitative analysis with the simplicity of point-of-care testing. The device innovation lies on the use of a plastic tube anchored vertically on a hot surface while the side walls are exposed to a mini camera able to take snapshots of the colour change in real time during LAMP amplification. Competitive features are the rapid analysis (< 30 min), quantification over 9 log-units, crude sample-compatibility (saliva, tissue, swabs), low detection limit (< 5 copies/reaction), smartphone-operation, fast prototyping (3D-printing) and ability to select the dye of interest (Phenol red, HNB). The device's clinical utility is demonstrated in cancer mutations-analysis during the detection of 0.01% of BRAF-V600E-to-wild-type molecules from tissue samples and COVID-19 testing with 97% (Ct < 36.8) and 98% (Ct < 30) sensitivity when using extracted RNA and nasopharyngeal-swabs, respectively. The device high technology-readiness-level makes it a suitable platform for performing any colorimetric LAMP assay; moreover, its simple and inexpensive fabrication holds promise for fast deployment and application in global diagnostics.
环介导等温扩增以其高灵敏度、特异性和对抑制物质的耐受性而闻名。在这项工作中,我们开发了一种用于实时比色环介导等温扩增的设备,将实验室定量分析的准确性与即时检测的简单性相结合。该设备的创新之处在于使用垂直固定在热表面上的塑料管,同时侧壁暴露在能够实时拍摄 LAMP 扩增过程中颜色变化的微型相机下。竞争优势在于快速分析(<30 分钟)、超过 9 个对数单位的定量、粗制样本兼容性(唾液、组织、拭子)、低检测限(<5 个拷贝/反应)、智能手机操作、快速原型制作(3D 打印)以及选择感兴趣染料的能力(苯酚红、HNB)。该设备的临床实用性在检测组织样本中 BRAF-V600E 到野生型分子的 0.01%时的癌症突变分析以及使用提取 RNA 和鼻咽拭子时的 COVID-19 检测中得到了证明,灵敏度分别为 97%(Ct<36.8)和 98%(Ct<30)。该设备的高科技就绪水平使其成为执行任何比色环介导等温扩增试验的合适平台;此外,其简单且廉价的制造有望快速部署并在全球诊断中应用。