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Quantitative Nucleic Acid Amplification Methods for Viral Infections

机译:病毒感染的定量核酸扩增方法

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BACKGROUND: Over the past 2 decades there have been substantial improvements in the methods used to quantify viral nucleic acid in body fluids and in our understanding of how to use viral load measurements in the diagnosis and management of patients with a number of viral infections. These methods are now integrated into a wide range of diagnostic and treatment guidelines and commonly deployed in a variety of clinical settings.CONTENT: Quantitative nucleic acid amplification methods that are used to measure viral load are described along with key issues and important variables that affect their performance. Particular emphasis is placed on those methods used in clinical laboratories as US Food and Drug Administration–cleared or laboratory-developed tests. We discuss the clinical applications of these methods in patients with HIV-1, hepatitis C virus, hepatitis B virus, cytomegalovirus, Epstein-Barr virus, and BK polyomavirus infections. Finally, the current challenges and future directions of viral load testing are examined.SUMMARY: Quantitative nucleic acid amplification tests provide important information that can be used to predict disease progression, distinguish symptomatic from asymptomatic infection, and assess the efficacy of antiviral therapy. Despite the advances in technology, large challenges remain for viral testing related to accuracy, precision, and standardization. Digital PCR, a direct method of quantification of nucleic acids that does not rely on rate-based measurements or calibration curves, may address many of the current challenges.
机译:背景:在过去的20年中,用于定量检测体液中病毒核酸的方法以及我们对如何使用病毒载量测量技术来诊断和管理许多病毒感染患者的理解有了重大改进。这些方法现已集成到广泛的诊断和治疗指南中,并且通常部署在各种临床环境中。内容:描述了用于测量病毒载量的定量核酸扩增方法,以及影响它们的关键问题和重要变量。性能。特别强调那些在临床实验室中使用的方法,例如美国食品药品监督管理局(FDA)批准或实验室开发的测试方法。我们讨论了这些方法在HIV-1,丙型肝炎病毒,乙型肝炎病毒,巨细胞病毒,爱泼斯坦-巴尔病毒和BK多瘤病毒感染患者中的临床应用。最后,对病毒载量测试的当前挑战和未来方向进行了概述。总结:定量核酸扩增测试提供了重要信息,可用于预测疾病进展,区分症状和无症状感染以及评估抗病毒治疗的有效性。尽管技术进步,但与准确性,准确性和标准化相关的病毒测试仍面临着巨大挑战。数字PCR是一种不依赖于基于速率的测量或​​校准曲线的直接定量核酸方法,可以解决许多当前的挑战。

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