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Diagnostic testing in hepatitis C virus infection: viral kinetics and genomics.

机译:丙型肝炎病毒感染的诊断测试:病毒动力学和基因组学。

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Virological tools play a major role in the diagnosis of hepatitis C virus (HCV) infection and in ongoing decision-making based on the patient's virological response to therapy. Virological tools used to assess viral kinetics and viral genomics can also be applied to clinical and translational research, especially in studies aimed at understanding the mechanisms underlying HCV treatment failure. Viral kinetics studies are based on quantification of HCV RNA at prescribed intervals during treatment and mathematical modeling of HCV RNA dynamics. These studies require sensitive and specific HCV RNA assays with an extended dynamic range of quantification. Viral genomics methods are useful to correlate viral kinetics with the intrinsic genomic characteristics of the HCV infecting strain. The interpretation of results utilizing various viral genomics tools is difficult, however, and must include predictive structural and functional genomic analyses. These approaches will be particularly useful in studying the mechanisms of HCV treatment failure with new HCV inhibitors currently under development.
机译:病毒学工具在丙型肝炎病毒(HCV)感染的诊断以及基于患者对治疗的病毒学反应的持续决策中起着重要作用。用于评估病毒动力学和病毒基因组学的病毒学工具也可以用于临床和转化研究,尤其是在旨在了解HCV治疗失败的潜在机制的研究中。病毒动力学研究基于HCV RNA治疗过程中HCV RNA的定量测定和数学建模。这些研究需要灵敏且特异的HCV RNA检测方法,并具有扩展的动态定量范围。病毒基因组学方法可用于使病毒动力学与HCV感染株的固有基因组特征相关。但是,利用各种病毒基因组学工具对结果进行解释是困难的,并且必须包括预测性的结构和功能基因组分析。这些方法对于研究目前正在开发的新型HCV抑制剂对HCV治疗失败的机制特别有用。

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