Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.
KAIST Institute for Health Science and Technology (KIHST), Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.
ACS Nano. 2021 Jun 22;15(6):10194-10202. doi: 10.1021/acsnano.1c02154. Epub 2021 May 19.
Advent and fast spread of pandemic diseases draw worldwide attention to rapid, prompt, and accurate molecular diagnostics with technical development of ultrafast polymerase chain reaction (PCR). Microfluidic on-chip PCR platforms provide highly efficient and small-volume bioassay for point-of-care diagnostic applications. Here we report ultrafast, real-time, and on-chip nanoplasmonic PCR for rapid and quantitative molecular diagnostics at point-of-care level. The plasmofluidic PCR chip comprises glass nanopillar arrays with Au nanoislands and gas-permeable microfluidic channels, which contain reaction microchamber arrays, a precharged vacuum cell, and a vapor barrier. The on-chip configuration allows both spontaneous sample loading and microbubble-free PCR reaction during which the plasmonic nanopillar arrays result in ultrafast photothermal cycling. After rapid sample loading less than 3 min, two-step PCR results for 40 cycles show rapid amplification in 264 s for lambda-DNA, and 306 s for plasmids expressing SARS-CoV-2 envelope protein. In addition, the cyclic real-time quantification of amplicons clearly demonstrates the amplification efficiencies of more than 91%. This PCR platform can provide rapid point-of-care molecular diagnostics in helping slow the fast-spreading pandemic.
传染病的出现和迅速传播引起了全世界对快速、及时和准确的分子诊断的关注,这推动了超快聚合酶链反应(PCR)技术的发展。微流控芯片上的 PCR 平台为即时诊断应用提供了高效、小体积的生物分析。在此,我们报告了一种超快、实时、片上纳米等离子体 PCR 方法,用于即时、定量的分子诊断。该流控 PCR 芯片由具有金纳米岛的玻璃纳米柱阵列和透气微流道组成,其中包含反应微腔阵列、预充电真空室和蒸汽屏障。该片上结构允许在自发样品加载的同时进行无微泡 PCR 反应,在此过程中,等离子体纳米柱阵列导致超快光热循环。在快速加载样品(少于 3 分钟)之后,两步法 PCR 进行 40 个循环,lambda-DNA 的快速扩增耗时 264 秒,表达 SARS-CoV-2 包膜蛋白的质粒扩增耗时 306 秒。此外,循环实时定量分析明确表明扩增效率超过 91%。该 PCR 平台可用于即时的床边分子诊断,有助于减缓快速传播的大流行。