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Qualitative detection of GB Virus C and Hepatitis C Virus co-infection in cirrhotic patients using a SYBR green multiplex RT-PCR technique

机译:利用SYBR绿色多重RT-PCR技术进行肝硬化患者GB病毒C和丙型肝炎病毒的定性检测

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GB Virus C (GBV-C) and Hepatitis C Virus (HCV) belong to the Flaviviridae family of viruses and GBV-C is the closest virus to HCV genetically. Possibility of interaction between HCV and GBV-C and its association with other liver diseases are the most important clinical aspects which encourage researchers to develop a technique for detection of these viruses simultaneously. In this study a SYBR Green multiplex real time RT-PCR technique as a new economical and sensitive method was optimized for simultaneous detection of HCV/ GBV-C in cirrhotic patients. After designing two pairs of specific primers for HCV and GBV-C, SYBR Green Real time RT-PCR technique optimization was performed separately for each virus. Then, multiplex PCR was developed. Finally the optimized technique was performed on positive and negative plasma samples. Eighty nine cirrhotic HCV positive plasma samples (29 of genotype 3a and 27 of genotype 1a) were collected from patients before receiving treatment. 14% of genotype 3a and 17.1% of genotype 1a showed HCV/ GBV-C co-infection. As a result, 13.48% of 89 samples had HCV/ GBV-C co-infection that was compatible with other results from all over the world. Data showed no apparent influence of HGV co-infection on the either clinical or virological aspect of HCV infection. Furthermore, with application of multiplex Real time RT-PCR technique, more time and cost could be saved in clinical-research settings.
机译:GB病毒C(GBV-C)和丙型肝炎病毒(HCV)属于黄病毒族病毒,GBV-C是GBV-C的遗传到HCV最近的病毒。 HCV和GBV-C之间的相互作用及其与其他肝病的关联是最重要的临床方面,鼓励研究人员同时开发用于检测这些病毒的技术。在本研究中,优化了一种SYBR绿色多重实时RT-PCR技术,以同时检测肝硬化患者的HCV / GBV-C。在为HCV和GBV-C设计两对特异性引物后,SYBR绿色实时RT-PCR技术优化对于每种病毒分别进行。然后,开发了多重PCR。最后,对正等离子体样品进行了优化的技术。在接受治疗之前,从患者收集八十九个肝硬化HCV阳性等离子体样本(基因型3A和27个基因型1A)。 14%的基因型3A和17.1%的基因型1A显示HCV / GBV-C的共感染。因此,13.48%的89个样品具有HCV / GBV-C的共感染,与世界各地的其他结果相容。数据显示HGV共感应对HCV感染的任何临床或病毒学方面没有明显影响。此外,通过应用多重实时RT-PCR技术,可以在临床研究环境中节省更多的时间和成本。

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