Department of Bioengineering, Rice University, Houston, Texas, United States of America.
Rice 360° Institute of Global Health, Rice University, Houston, Texas, United States of America.
PLoS One. 2022 Feb 25;17(2):e0264130. doi: 10.1371/journal.pone.0264130. eCollection 2022.
The global COVID-19 pandemic has highlighted the need for rapid, accurate and accessible nucleic acid tests to enable timely identification of infected individuals. We optimized a sample-to-answer nucleic acid test for SARS-CoV-2 that provides results in <1 hour using inexpensive and readily available reagents. The test workflow includes a simple lysis and viral inactivation protocol followed by direct isothermal amplification of viral RNA using RT-LAMP. The assay was validated using two different instruments, a portable isothermal fluorimeter and a standard thermocycler. Results of the RT-LAMP assay were compared to traditional RT-qPCR for nasopharyngeal swabs, nasal swabs, and saliva collected from a cohort of patients hospitalized due to COVID-19. For all three sample types, positive agreement with RT-LAMP performed using the isothermal fluorimeter was 100% for samples with Ct <30 and 69-91% for samples with Ct <40. Following validation, the test was successfully scaled to test the saliva of up to 400 asymptomatic individuals per day as part of the campus surveillance program at Rice University. Successful development, validation, and scaling of this sample-to-answer, extraction-free real-time RT-LAMP test for SARS-CoV-2 adds a highly adaptable tool to efforts to control the COVID-19 pandemic, and can inform test development strategies for future infectious disease threats.
全球 COVID-19 大流行凸显了对快速、准确和易于获得的核酸检测的需求,以便及时识别感染个体。我们优化了一种针对 SARS-CoV-2 的样本到答案的核酸检测方法,使用廉价且易于获得的试剂在 1 小时内提供结果。该测试工作流程包括简单的裂解和病毒失活方案,然后使用 RT-LAMP 直接等温扩增病毒 RNA。该测定使用两种不同的仪器,即便携式等温荧光计和标准热循环仪进行了验证。使用 RT-LAMP 检测鼻咽拭子、鼻拭子和因 COVID-19 住院的患者采集的唾液的结果与传统 RT-qPCR 进行了比较。对于所有三种样本类型,使用等温荧光计进行的 RT-LAMP 阳性符合率在 Ct <30 的样本中为 100%,在 Ct <40 的样本中为 69-91%。经过验证后,该测试成功扩展到每天测试多达 400 名无症状个体,作为 Rice 大学校园监测计划的一部分。这种样本到答案、无需提取的实时 RT-LAMP 检测 SARS-CoV-2 的成功开发、验证和扩展为控制 COVID-19 大流行增加了一种高度适应性的工具,并为未来传染病威胁的检测开发策略提供了信息。