Virology Unit, Department of Public Health and Microbiology, University Hospital San Giovanni Battista di Torino, University of Turin, Via Santena 9, 10126 Turin, Italy.
Mol Biotechnol. 2012 Mar;50(3):221-8. doi: 10.1007/s12033-011-9432-4.
Evidence demonstrating that human rhinovirus (HRV) disease is not exclusively limited to the upper airways and may cause lower respiratory complications, together with the frequency of HRV infections and the increasing number of immunocompromised patients underline the need for rapid and accurate diagnosis of HRV infections. In this study, we developed the first quantitative real-time nucleic acid sequence-based amplification assay with an internal control using molecular beacon probes for selective and sensitive detection of human rhinovirus serotypes. We described a simple method to accurately quantify RNA target by computing the time to positivity (TTP) values for HRV RNA. Quantification capacity was assessed by plotting these TTP values against the starting number of target molecules. By using this simple method, we have significantly increased the diagnostic accuracy, precision, and trueness of real-time NASBA assay. Specificity of the method was verified in both in silico and experimental studies. Moreover, for assessment of clinical reactivity of the assay, NASBA has been validated on bronchoalveolar lavage (BAL) specimens. Our quantitative NASBA assay was found to be very specific, accurate, and precise with high repeatability and reproducibility.
证据表明,人类鼻病毒(HRV)疾病并不仅限于上呼吸道,可能会引起下呼吸道并发症,再加上 HRV 感染的频率以及免疫功能低下患者数量的增加,突显了快速准确诊断 HRV 感染的必要性。在这项研究中,我们使用分子信标探针开发了第一个具有内部对照的定量实时核酸序列扩增检测方法,用于选择性和灵敏性检测人类鼻病毒血清型。我们描述了一种通过计算 HRV RNA 的阳性时间 (TTP) 值来准确量化 RNA 靶标量的简单方法。通过将这些 TTP 值与起始目标分子数作图来评估定量能力。通过使用这种简单的方法,我们显著提高了实时 NASBA 检测的诊断准确性、精密度和真实性。该方法的特异性已在计算机模拟和实验研究中得到验证。此外,为了评估该检测方法的临床反应性,NASBA 已在支气管肺泡灌洗液(BAL)标本上得到验证。我们的定量 NASBA 检测方法具有非常高的特异性、准确性和精密度,重复性和重现性也很高。