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利用 3D 打印机改装的 RNA 提取设备,实现高通量 COVID-19 分子诊断和基因组测序的无障碍平台。

Accessible Platform for High-Throughput COVID-19 Molecular Diagnostics and Genome Sequencing Using a Repurposed 3D Printer for RNA Extraction.

机构信息

Department of Microbiology and Immunology, Doherty Institute for Infection and Immunity, University of Melbourne, 792 Elizabeth St, Melbourne, Victoria 3000, Australia.

Microbiological Diagnostic Unit Public Health Laboratory, Doherty Institute for Infection and Immunity, University of Melbourne, 792 Elizabeth St, Melbourne, Victoria 3000, Australia.

出版信息

ACS Biomater Sci Eng. 2021 Sep 13;7(9):4669-4676. doi: 10.1021/acsbiomaterials.1c00775. Epub 2021 Aug 26.

Abstract

The COVID-19 pandemic has exposed the dependence of diagnostic laboratories on a handful of large corporations with market monopolies on the worldwide supply of reagents, consumables, and hardware for molecular diagnostics. Global shortages of key consumables for RT-qPCR detection of SARS-CoV-2 RNA have impaired the ability to run essential, routine diagnostic services. Here, we describe a workflow for rapid detection of SARS-CoV-2 RNA in upper respiratory samples including nasal swabs and saliva, utilizing low-cost equipment and readily accessible reagents. Using repurposed three-dimensional (3D) printers, we built a semiautomated paramagnetic bead RNA extraction platform. The hardware for the system was built for $300 USD, and the material cost per reaction was $1 USD. Named the , instrument performance when paired with RT-qPCR for SARS-CoV-2 detection in nasal and saliva specimens was two virus copies per microliter. There was a high-performance agreement (assessed using 458 COVID-19 nasal swab specimens) with the Aptima SARS-CoV-2 assay run on the Hologic Panther, a commercial automated RNA extraction and detection platform. Inter- and intrainstrument precision was excellent (coefficients of variation (CoV) of 1.10 and 0.66-1.32%, respectively) across four instruments. The platform is scalable with throughput ranging from 23 specimens on a single instrument run by one user in 50 min to 364 specimens on four instruments run by four users in 190 min. Step-by-step instructions and protocols for building and running the have been made available without restriction.

摘要

COVID-19 大流行暴露了诊断实验室对少数几家大型公司的依赖,这些公司在全球范围内对分子诊断试剂、耗材和硬件拥有市场垄断地位。全球用于 RT-qPCR 检测 SARS-CoV-2 RNA 的关键耗材短缺,削弱了运行基本常规诊断服务的能力。在这里,我们描述了一种利用低成本设备和易于获得的试剂快速检测上呼吸道样本(包括鼻拭子和唾液)中 SARS-CoV-2 RNA 的工作流程。我们使用经过改造的三维(3D)打印机构建了半自动顺磁珠 RNA 提取平台。该系统的硬件成本为 300 美元,每个反应的材料成本为 1 美元。该仪器命名为,与用于检测鼻拭子和唾液标本中 SARS-CoV-2 的 RT-qPCR 配对时,其性能为每微升 2 个病毒拷贝。与在 Hologic Panther 上运行的商业化自动 RNA 提取和检测平台 Aptima SARS-CoV-2 检测相比,该仪器具有高度一致的性能(使用 458 份 COVID-19 鼻拭子标本进行评估)。仪器间和仪器内精度均极佳(四个仪器的变异系数(CoV)分别为 1.10%和 0.66-1.32%)。该平台可扩展,单个仪器单次运行由一名用户处理 23 个样本,50 分钟内可处理 364 个样本;或由四名用户在 190 分钟内处理四个仪器的 364 个样本。构建和运行的详细步骤和协议已无限制地提供。

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