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用于定量病毒载量的样本到答案离心微流控液滴 PCR 平台。

Sample-to-answer centrifugal microfluidic droplet PCR platform for quantitation of viral load.

机构信息

Life Sciences Division, National Research Council of Canada (NRC), 75 de Mortagne Boulevard, Boucherville, QC, J4B 6Y4, Canada.

Center for Research and Applications of Fluidic Technologies (CRAFT) @ NRC and University of Toronto, Canada.

出版信息

Lab Chip. 2024 Oct 9;24(20):4755-4765. doi: 10.1039/d4lc00533c.

Abstract

Droplet digital polymerase chain reaction (ddPCR) stands out as a highly sensitive diagnostic technique that is gaining traction in infectious disease diagnostics due to its ability to quantitate very low numbers of viral gene copies. By partitioning the sample into thousands of droplets, ddPCR enables precise and absolute quantification without relying on a standard curve. However, current ddPCR systems often exhibit relatively low levels of integration, and the analytical process remains dependent on elaborate workflows for up-front sample preparation. Here, we introduce a fully-integrated system seamlessly combining viral lysis, RNA extraction, emulsification, reverse transcription (RT) ddPCR, and fluorescence readout in a sample-to-answer format. The system comprises a disposable microfluidic cartridge housing buffers and reagents required for the assay, and a centrifugal platform that allows for pneumatic actuation of liquids during rotation, enabling automation of the workflow. Highly monodisperse droplets (∼50 μm in diameter) are produced using centrifugal step emulsification and automatically transferred to an integrated heating module for target amplification. The platform is equipped with a miniature fluorescence imaging system enabling on-chip read-out of droplets after RT-ddPCR. We demonstrate sample-to-answer detection of SARS-CoV-2 N and E genes, along with RNase P endogenous reference, using hydrolysis probes and multiplexed amplification within single droplets for concentrations as low as 0.1 copy per μL. We also tested 14 nasopharyngeal swab specimens from patients and were able to distinguish positive and negative SARS-CoV-2 samples with 100% accuracy, surpassing results obtained by conventional real-time amplification.

摘要

微滴式数字聚合酶链式反应(ddPCR)是一种高度敏感的诊断技术,由于其能够定量检测非常低数量的病毒基因拷贝,因此在传染病诊断中越来越受到关注。通过将样本分成数千个微滴,ddPCR 可以实现精确和绝对的定量,而无需依赖标准曲线。然而,目前的 ddPCR 系统通常表现出相对较低的集成水平,并且分析过程仍然依赖于繁琐的工作流程进行样本预处理。在这里,我们介绍了一种完全集成的系统,它可以无缝地将病毒裂解、RNA 提取、乳化、逆转录(RT)ddPCR 和荧光读取整合到一个样本到答案的格式中。该系统包括一个一次性微流控卡匣,其中包含用于测定的缓冲液和试剂,以及一个离心平台,该平台允许在旋转过程中通过气动作用来驱动液体,从而实现工作流程的自动化。使用离心分步乳化技术产生高度单分散的微滴(直径约 50 μm),并自动将其转移到集成的加热模块中进行目标扩增。该平台配备了一个微型荧光成像系统,可在 RT-ddPCR 后对微滴进行芯片上读取。我们展示了使用水解探针和单滴内多重扩增,对 SARS-CoV-2 N 和 E 基因以及内源性参照 RNAse P 进行了从样本到答案的检测,检测下限低至 0.1 拷贝/μL。我们还测试了来自患者的 14 个鼻咽拭子样本,能够以 100%的准确率区分 SARS-CoV-2 阳性和阴性样本,超过了传统实时扩增的结果。

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