紧急关注的SARS-CoV-2变体:快速直接RT-qPCR检测,无需RNA提取,临床比较,成本效益高,高通量

Bing-Heng Yang, Hsing-Yi Chung, L. Kao, M. Jian, Chih-Kai Chang, Jung‐Chung Lin, Kuo‐Ming Yeh, Chien-Wen Chen, Ya-Sung Yang, Shan-Shan Hsieh, Sheng-Hui Tang, C. Perng, F. Chang, Hung-Sheng Shang
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引用次数: 0

摘要

自2020年底以来,令人关注的严重急性呼吸综合征冠状病毒2 (SARS-CoV-2)变异的演变特征是出现刺突蛋白突变,这些变异已在全球占主导地位。金标准SARS-CoV-2诊断方案需要两个复杂的过程,即RNA提取和实时逆转录聚合酶链反应(RT-PCR)。需要一种更快、更简单和更具成本效益的检测策略,可以在全世界,特别是在发展中国家使用。我们提出了直接RT-qPCR的新用途,它不需要RNA提取或预热步骤。为了进行回顾性检测,我们使用了770份临床鼻咽拭子,包括阳性和阴性样本。使用两种不同的热循环器对样品的N1和E基因进行RT-qPCR。检测限N1为30拷贝/反应,e为60拷贝/反应,对建立的直接RT-qPCR进行分析敏感性评估;灵敏度为95.69%,阴性预测值为99.9%,准确率为99.35%,曲线下面积为0.978。这种无需提取RNA的直接RT-qPCR诊断方法是一种可靠、高通量的替代方法,可在2019冠状病毒病大流行期间显著节省成本、人工和时间。
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Emergency SARS-CoV-2 variants of concern: rapidly direct RT-qPCR detection without RNA extraction, clinical comparison, cost-effective, and high-throughput
Since the late 2020, the evolution of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) variants of concern has been characterized by the emergence of spike protein mutations, and these variants have become dominant worldwide. The gold standard SARS-CoV-2 diagnosis protocol requires two complex processes, namely, RNA extraction and real-time reverse transcriptase polymerase chain reaction (RT-PCR). There is a need for a faster, simpler, and more cost-effective detection strategy that can be utilized worldwide, especially in developing countries. We propose the novel use of direct RT-qPCR, which does not require RNA extraction or a preheating step. For the detection, retrospectively, we used 770 clinical nasopharyngeal swabs, including positive and negative samples. The samples were subjected to RT-qPCR in the N1 and E genes using two different thermocyclers. The limit of detection was 30 copies/reaction for N1 and 60 copies/reaction for E. Analytical sensitivity was assessed for the developed direct RT-qPCR; the sensitivity was 95.69%, negative predictive value was 99.9%, accuracy of 99.35%, and area under the curve was 0.978. This novel direct RT-qPCR diagnosis method without RNA extraction is a reliable and high-throughput alternative method that can significantly save cost, labor, and time during the coronavirus disease 2019 pandemic.
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