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首页> 外文期刊>Journal of Clinical Microbiology >Strategic Approach To Produce Low-Cost, Efficient, and Stable Competitive Internal Controls for Detection of RNA Viruses by Use of Reverse Transcription-PCR
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Strategic Approach To Produce Low-Cost, Efficient, and Stable Competitive Internal Controls for Detection of RNA Viruses by Use of Reverse Transcription-PCR

机译:通过使用逆转录PCR生产低成本,高效且稳定的竞争性内部对照来检测RNA病毒的战略方法

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摘要

Molecular diagnostics based on reverse transcription (RT)-PCR are routinely complicated by the lack of stable internal controls, leading to falsely negative results. We describe a strategy to produce a stable competitive internal control (CIC) based on a Qβ phage derivative (recombinant Qβ [rQβ]) bearing primers KY78 and KY80, which are widely used in the detection of hepatitis C virus (HCV). rQβ was RNase resistant and stable at 4°C for 452 days in SM medium (0.1 M NaCl, 8 mM MgSO4·7H2O, 50 mM Tris HCl [pH 7.5], 2% gelatin) and for 125 days after lyophilization and reconstitution. rQβ performance as a CIC was evaluated. rQβ was added to HCV-positive samples, followed by RNA extraction and a CIC-HCV RT-PCR assay. This method combines RT-PCR, liquid hybridization with nonradioactive probes, and enzyme immunoanalysis. No influence of the CIC on qualitative HCV detection was observed independently of viral load, and results had high concordance with those of commercial kits. In conclusion, we describe a versatile, low-cost alternative strategy to armored RNA technology that can be adapted for detection or real-time applications of any RNA target. Moreover, the CIC reported here is an essential reagent for HCV screening in blood banks in resource-limited settings.
机译:由于缺乏稳定的内部控制,基于逆转录(RT)-PCR的分子诊断通常会变得复杂,从而导致错误的阴性结果。我们描述了一种基于带有引物KY78和KY80的Qβ噬菌体衍生物(重组Qβ[rQβ])产生稳定的竞争性内部控制(CIC)的策略,该引物广泛用于丙型肝炎病毒(HCV)的检测。 rQβ耐RNase,在SM培养基(0.1 M NaCl,8 mM MgSO 4 ·7H 2 O,50 mM Tris HCl [pH 7.5],2%明胶)冻干和复原后放置125天。评估rQβ作为CIC的性能。将rQβ添加到HCV阳性样品中,然后进行RNA提取和CIC-HCV RT-PCR分析。该方法结合了RT-PCR,与非放射性探针的液体杂交以及酶免疫分析。独立于病毒载量,未观察到CIC对HCV定性检测的影响,并且结果与市售试剂盒的结果高度一致。总之,我们描述了一种铠装RNA技术的通用,低成本替代策略,该策略可适用于任何RNA靶标的检测或实时应用。此外,此处报道的CIC是在资源有限的环境中进行血库HCV筛查的重要试剂。

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