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Determination of lamivudine-resistant variants of hepatitis B virus by denaturing gradient gel electrophoresis: a novel approach to monitoring drug resistance

机译:通过变性梯度凝胶电泳确定乙型肝炎病毒对拉米夫定耐药的变异体:监测耐药性的新方法

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Background A DGGE-based assay for hepatitis B virus (HBV) drug-resistance monitoring was designed and checked for feasibility. It detects mutations within the YMDD motif related to lamivudine resistance. Material and Method The YMDD motif of HBV polymerase was amplified by the set of primers designed in this study. DGGE analysis of the amplicons was performed on 9% polyacrylamide gels containing a 20-40% gradient of urea plus formamide and electrophoresis was performed. DNA sequencing was performed using a standard protocol. Results Based on the DGGE pattern of previously sequenced HBV variants, a reference ladder consisting of bands was constructed within and near the YMDD motif of HBV with excellent resolution. The genotypes of all the fragments included in the ladder were confirmed by sequencing after DGGE analysis. The flexibility of DGGE was demonstrated by the ability to add more bands to the migration ladder when new variants were discovered during the analysis of patient specimens. Clinical samples from HBV-infected patients were also used to demonstrate the performance of this approach. Conclusions This preliminary feasibility study of HBV drug-resistance monitoring by means of DGGE shows the potential advantage of this approach for low-cost screening for viral drug resistance in clinical settings. The presented example can be extended to detect other mutations related to drug resistance in the HBV genome as well as other viruses.
机译:背景技术设计了基于DGGE的乙型肝炎病毒(HBV)耐药性监测方法,并检查了其可行性。它可以检测YMDD基序内与拉米夫定耐药相关的突变。材料和方法本研究设计的引物组可扩增HBV聚合酶的YMDD基序。在含有20-40%尿素加甲酰胺梯度的9%聚丙烯酰胺凝胶上进行了扩增子的DGGE分析,并进行了电泳。使用标准方案进行DNA测序。结果基于先前测序的HBV变异体的DGGE模式,在HBV的YMDD基序内和附近构建了由条带组成的参考阶梯,具有出色的分辨率。通过DGGE分析后的测序确认了梯子中包括的所有片段的基因型。当在患者标本分析过程中发现新的变体时,DGGE的灵活性通过向迁移阶梯添加更多条带的能力得到了证明。来自HBV感染患者的临床样本也被用来证明这种方法的有效性。结论这项通过DGGE监测HBV耐药性的初步可行性研究表明,该方法在临床环境中低成本筛查病毒耐药性具有潜在优势。所提供的示例可以扩展为检测与HBV基因组中的耐药性相关的其他突变以及其他病毒。

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