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基于等离子体光学阱的增强速率 PCR。

Plasmonic Optical Wells-Based Enhanced Rate PCR.

机构信息

Department of Life Science, University of Seoul, Seoul, 02504, Republic of Korea.

Harvard Medical School, Department of Medicine, Brigham and Women's Hospital, Boston, Massachusetts 02115, United States.

出版信息

Nano Lett. 2024 Feb 7;24(5):1738-1745. doi: 10.1021/acs.nanolett.3c04615. Epub 2024 Jan 29.

Abstract

Rapid, sensitive, inexpensive point-of-care molecular diagnostics are crucial for the efficient control of spreading viral diseases and biosecurity of global health. However, the gold standard, polymerase chain reaction (PCR) is time-consuming and expensive and needs specialized testing laboratories. Here, we report a low-cost yet fast, selective, and sensitive Plasmonic Optical Wells-Based Enhanced Rate PCR: POWER-PCR. We optimized the efficient optofluidic design of 3D plasmonic optical wells via the computational simulation of light-to-heat conversion and thermophoretic convection in a self-created plasmonic cavity. The POWER-PCR chamber with a self-passivation layer can concentrate incident light to accumulate molecules, generate rapid heat transfer and thermophoretic flow, and minimize the quenching effect on the naked Au surface. Notably, we achieved swift photothermal cycling of nucleic acid amplification in POWER-PCR on-a-chip in 4 min 24 s. The POWER-PCR will provide an excellent solution for affordable and sensitive molecular diagnostics for precision medicine and preventive global healthcare.

摘要

快速、灵敏、廉价的即时分子诊断对于有效控制病毒疾病的传播和全球卫生的生物安全至关重要。然而,聚合酶链反应(PCR)作为金标准,既耗时又昂贵,且需要专门的检测实验室。在这里,我们报告了一种低成本、快速、选择性和灵敏的基于等离子体光学井的增强速率 PCR(POWER-PCR)。我们通过在自行创建的等离子体腔中对光热转换和热泳对流进行计算模拟,优化了 3D 等离子体光学井的高效光流设计。带有自钝化层的 POWER-PCR 腔可以集中入射光以积累分子,产生快速的热传递和热泳流,并最大限度地减少对裸露金表面的猝灭效应。值得注意的是,我们在 POWER-PCR 芯片上实现了 4 分 24 秒的快速光热循环核酸扩增。POWER-PCR 将为平价、灵敏的分子诊断提供一个出色的解决方案,以用于精准医疗和预防性全球医疗保健。

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