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A high-throughput multiplex genetic detection system for Helicobacter pylori identification, virulence and resistance analysis

机译:用于幽门螺杆菌鉴定,毒力和耐药性分析的高通量多重遗传检测系统

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Aim: We established a high-throughput multiplex genetic detection system (HMGS) for identification of Helicobacter pylori with concomitant analysis of virulence and drug resistance. Materials & methods: Confirmed 132 H. pylori cultures from gastric biopsies were screened by 20-gene site-HMGS, sequencing and E-test. Results: HMGS was highly sensitive and specific for H. pylori identification. Concordance rate between HMGS and sequencing averaged 94.5% (virulence genes) and 97.3% (resistance genes). Observed resistance rates to four mainstream antibiotics were high, except for amoxicillin. Significant association between virulence genotype and risks for specific gastrointestinal diseases was found for five genes. Metronidazole resistance in peptic ulcer patients was significantly higher. Conclusion: HMGS is an effective method for H. pylori identification and analysis of virulence and drug resistance.
机译:目的:我们建立了高通量多重基因检测系统(HMGS),用于鉴定幽门螺杆菌,并同时进行毒力和耐药性分析。材料与方法:通过20个基因位点的HMGS,测序和E-test筛选从胃活检中确认的132例幽门螺杆菌培养物。结果:HMGS对幽门螺杆菌的鉴定具有高度的敏感性和特异性。 HMGS与测序之间的一致率平均为94.5%(致病基因)和97.3%(抗性基因)。除阿莫西林外,观察到的对四种主流抗生素的耐药率很高。发现五个基因的毒力基因型与特定胃肠道疾病风险之间存在显着关联。消化性溃疡患者对甲硝唑的抵抗力明显更高。结论:HMGS是鉴定和分析幽门螺杆菌毒力和耐药性的有效方法。

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