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用于高通量 SARS-CoV-2 和鼻咽拭子样本中细胞反应检测的多功能灵活微流控 qPCR 测试。

Versatile and flexible microfluidic qPCR test for high-throughput SARS-CoV-2 and cellular response detection in nasopharyngeal swab samples.

机构信息

Université Côte d'Azur, CNRS, Institut de Pharmacologie Moléculaire et Cellulaire, FHU-OncoAge, Valbonne, France.

Département de Pneumologie, CHU-Nice, FHU-OncoAge, Université Côte d'Azur, Nice, France.

出版信息

PLoS One. 2021 Apr 14;16(4):e0243333. doi: 10.1371/journal.pone.0243333. eCollection 2021.

Abstract

The emergence and quick spread of SARS-CoV-2 has pointed at a low capacity response for testing large populations in many countries, in line of material, technical and staff limitations. The traditional RT-qPCR diagnostic test remains the reference method and is by far the most widely used test. These assays are limited to a few probe sets, require large sample PCR reaction volumes, along with an expensive and time-consuming RNA extraction step. Here we describe a quantitative nanofluidic assay that overcomes some of these shortcomings, based on the BiomarkTM instrument from Fluidigm. This system offers the possibility of performing 4608 qPCR end-points in a single run, equivalent to 192 clinical samples combined with 12 pairs of primers/probe sets in duplicate, thus allowing the monitoring of SARS-CoV-2 including the detection of specific SARS-CoV-2 variants, as well as the detection other pathogens and/or host cellular responses (virus receptors, response markers, microRNAs). The 10 nL-range volume of BiomarkTM reactions is compatible with sensitive and reproducible reactions that can be easily and cost-effectively adapted to various RT-qPCR configurations and sets of primers/probe. Finally, we also evaluated the use of inactivating lysis buffers composed of various detergents in the presence or absence of proteinase K to assess the compatibility of these buffers with a direct reverse transcription enzymatic step and we propose several protocols, bypassing the need for RNA purification. We advocate that the combined utilization of an optimized processing buffer and a high-throughput real-time PCR device would contribute to improve the turn-around-time to deliver the test results to patients and increase the SARS-CoV-2 testing capacities.

摘要

SARS-CoV-2 的出现和迅速传播表明,许多国家的检测能力有限,无法对大量人群进行检测,这与物质、技术和人员的限制有关。传统的 RT-qPCR 诊断检测仍然是参考方法,也是迄今为止应用最广泛的检测方法。这些检测方法仅限于少数探针集,需要大体积的样本 PCR 反应,以及昂贵且耗时的 RNA 提取步骤。在这里,我们描述了一种基于 Fluidigm BiomarkTM 仪器的定量纳米流体检测方法,该方法克服了这些缺点。该系统可以在单个运行中进行 4608 个 qPCR 终点检测,相当于 192 个临床样本与 12 对引物/探针组合进行重复检测,从而可以监测 SARS-CoV-2,包括检测特定的 SARS-CoV-2 变体,以及检测其他病原体和/或宿主细胞反应(病毒受体、反应标志物、microRNAs)。 BiomarkTM 反应的 10 nL 体积与敏感且可重复的反应兼容,这些反应可以很容易且具有成本效益地适应各种 RT-qPCR 配置和引物/探针组合。最后,我们还评估了在存在或不存在蛋白酶 K 的情况下,使用不同洗涤剂组成的灭活裂解缓冲液的效果,以评估这些缓冲液与直接逆转录酶步骤的兼容性,并提出了几种绕过 RNA 纯化的方案。我们主张,优化的处理缓冲液与高通量实时 PCR 设备的联合使用将有助于缩短向患者提供检测结果的周转时间,并提高 SARS-CoV-2 的检测能力。

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