National Engineering Research Center for Optical Instruments, College of Optical Science and Engineering, Zhejiang University, Hangzhou 310052, China.
Ningbo Research Institute, Ningbo 310050, China.
Anal Chem. 2021 Nov 23;93(46):15288-15294. doi: 10.1021/acs.analchem.1c02414. Epub 2021 Nov 4.
Herein, a pipette-tip-enabled digital nucleic acid analyzer for high-performance COVID-19 testing is demonstrated. This is achieved by digital loop-mediated isothermal amplification (digital LAMP or dLAMP) using common laboratory equipment and materials. It is shown that simply fixing a glass capillary inside conventional pipette tips enables the generation of monodisperse, water-in-oil microdroplets with benchtop centrifugation. It is shown that using LAMP, the ORF1a/b gene, a standard test region for COVID-19 screening, can be amplified without a thermal cycler. The amplification allows counting of fluorescent microdroplets so that Poisson analysis can be performed to allow quantification with a limit of detection that is 1 order of magnitude better than those of nondigital techniques and comparable to those of commercial dLAMP platforms. It is envisioned that this work will inspire studies on ultrasensitive digital nucleic acid analyzers demanding both sensitivity and accessibility, which is pivotal to their large-scale applications.
本文展示了一种基于移液器吸头的数字核酸分析仪,可用于高性能的 COVID-19 检测。该方法通过使用常见的实验室设备和材料进行数字环介导等温扩增(数字 LAMP 或 dLAMP)来实现。结果表明,只需将玻璃毛细管固定在常规移液器吸头内,就可以使用台式离心机生成单分散的油包水微滴。结果还表明,使用 LAMP 技术,无需热循环仪即可扩增 ORF1a/b 基因,这是 COVID-19 筛选的标准测试区域。扩增允许对荧光微滴进行计数,以便进行泊松分析,从而可以进行定量检测,其检测限比非数字技术提高了 1 个数量级,与商业 dLAMP 平台相当。可以预见,这项工作将激发对灵敏度和易用性都有要求的超灵敏数字核酸分析仪的研究,这对于它们的大规模应用至关重要。