Mukae Kyosuke, Takei Osamu, Imai Fumi, Kamijo Takehiko
Research Institute for Clinical Oncology, Saitama Cancer Center, Saitama, 362-0806, Japan.
PMT Corporation, Fukuoka, 811-2115, Japan.
Pract Lab Med. 2023 Sep 4;37:e00335. doi: 10.1016/j.plabm.2023.e00335. eCollection 2023 Nov.
Genetic tests using RNA/DNA are the most accurate for diagnosing infectious diseases and assessing disease susceptibility, including COVID-19. However, manual specimen handling and the risk of secondary infections by medical staff highlight the need for automated equipment. Automation methods, such as bead purification, have limitations with high-viscosity specimens, while column purification requires complex equipment. This study aimed to develop an automated device using the column purification method for safe and reliable infectious disease diagnosis. We compared the yield and purification of three nucleic acid extraction methods (centrifugation, pressurization, and depressurization) and examined the adaptation of the extraction methods to automated device. Furthermore, we examined the feasibility of extracting SARS-CoV-2 RNA from COVID-19 patients and using qPCR analysis to determine whether the extraction method could be used as a clinical analyzer. Results varied with different columns and reagents, but pressurization method was selected for the automated device's RNA/DNA extraction. Using an automated device equipped with a pressurization method, RNA extracted from pharyngeal fluids from COVID-19 patients who had already been diagnosed with SARS-CoV-2 by qRT-PCR again tested positive. These findings demonstrate the device's effectiveness for nucleic acid extraction and virus-targeted diagnostics. Moreover, it holds potential for genetic testing in fields like food and environmental measurements. The automated device addresses specimen handling challenges and provides a reliable tool for infectious disease diagnosis.
使用RNA/DNA的基因检测在诊断传染病和评估疾病易感性(包括新冠病毒病)方面最为准确。然而,人工样本处理以及医护人员面临二次感染的风险凸显了对自动化设备的需求。自动化方法,如磁珠纯化,在处理高粘度样本时存在局限性,而柱纯化则需要复杂的设备。本研究旨在开发一种使用柱纯化方法的自动化设备,用于安全可靠的传染病诊断。我们比较了三种核酸提取方法(离心、加压和减压)的产量和纯化效果,并研究了这些提取方法对自动化设备的适应性。此外,我们还研究了从新冠病毒病患者中提取严重急性呼吸综合征冠状病毒2(SARS-CoV-2)RNA并使用定量聚合酶链反应(qPCR)分析来确定该提取方法是否可作为临床分析仪的可行性。结果因不同的柱子和试剂而异,但加压方法被选用于自动化设备的RNA/DNA提取。使用配备加压方法的自动化设备,从已通过定量逆转录聚合酶链反应(qRT-PCR)确诊感染SARS-CoV-2的新冠病毒病患者咽拭子中提取的RNA再次检测呈阳性。这些发现证明了该设备在核酸提取和病毒靶向诊断方面的有效性。此外,它在食品和环境检测等领域的基因检测中具有潜力。该自动化设备解决了样本处理难题,为传染病诊断提供了可靠工具。