Arca-Lafuente Sonia, Yépez-Notario Cristina, Cea-Callejo Pablo, Lara-Aguilar Violeta, Crespo-Bermejo Celia, Martín-Carbonero Luz, de Los Santos Ignacio, Briz Verónica, Madrid Ricardo
Viral Hepatitis Reference and Research Laboratory, National Center of Microbiology (CNM), Carlos III Health Institute (ISCIII), Madrid, Majadahonda, Spain.
Department of Molecular Biology and Biochemical Engineering, Pablo de Olavide University (UPO), Sevilla, Spain.
Methods. 2024 Dec;232:43-51. doi: 10.1016/j.ymeth.2024.10.008. Epub 2024 Oct 22.
Globally, it is estimated that 1.0 million individuals are newly infected by Hepatitis C virus (HCV) every year, and nearly 50 million people live with a chronic infection, according to World Health Organization. To overcome underdiagnosis of HCV infection among hard-to-reach populations, it is essential to develop new rapid and easy-to-use molecular diagnostic systems. In this work, we have developed a pangenotypic diagnostic tool based on Loop-Mediated Isothermal Amplification (LAMP), coupled to a direct sample lysis procedure for molecular detection of HCV at point-of-care (POC).
Procedure validation was performed using 129 different samples from HCV infected patients (116 serum samples, and 13 fresh blood samples), 27 individuals who tested negative for HCV but positive for HIV, and 11 healthy donors. Serum was collected, lysed for 10 min at room temperature, and assayed by RT-LAMP. To achieve this, a set of 9 LAMP-primers was used for the first time. Parallel RT-qPCR assays were conducted for HCV to both validate the procedure and quantify viral loads.
HCV was detected by RT-LAMP in 109/116 HCV positive serum samples, and in 11/13 positive blood samples in less than 40 min. Compared to RT-qPCR results, our RT-LAMP procedure showed a sensitivity of 94 %, 100 % specificity, and a limit of detection of 3.26 log IU/mL (10-20 copies per reaction).
We have developed an accurate system, more affordable than the current available rapid tests for HCV. Since no prior RNA purification step from capillary blood is required, we strongly recommend our RT-LAMP system as a valuable and rapid tool for the molecular detection of HCV at POC.
据世界卫生组织估计,全球每年有100万人新感染丙型肝炎病毒(HCV),近5000万人患有慢性感染。为克服难以接触人群中HCV感染的诊断不足问题,开发新的快速且易于使用的分子诊断系统至关重要。在这项工作中,我们开发了一种基于环介导等温扩增(LAMP)的泛基因型诊断工具,并结合直接样本裂解程序,用于在护理点(POC)对HCV进行分子检测。
使用来自HCV感染患者的129份不同样本(116份血清样本和13份新鲜血液样本)、27名HCV检测阴性但HIV检测阳性的个体以及11名健康供体进行程序验证。收集血清,在室温下裂解10分钟,然后通过逆转录LAMP(RT-LAMP)进行检测。为此,首次使用了一组9种LAMP引物。对HCV进行平行逆转录定量聚合酶链反应(RT-qPCR)检测,以验证程序并定量病毒载量。
RT-LAMP在109/116份HCV阳性血清样本和11/13份阳性血液样本中在不到40分钟内检测到HCV。与RT-qPCR结果相比,我们的RT-LAMP程序显示出94%的灵敏度、100%的特异性以及3.26 log IU/mL的检测限(每个反应10-20个拷贝)。
我们开发了一种准确的系统,比目前可用的HCV快速检测方法更经济实惠。由于无需从毛细血管血中进行预先的RNA纯化步骤,我们强烈推荐我们的RT-LAMP系统作为一种有价值的快速工具用于在POC对HCV进行分子检测。