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首页> 外文期刊>Frontiers in Microbiology >Validation of a High-Throughput Multiplex Genetic Detection System for Helicobacter pylori Identification, Quantification, Virulence, and Resistance Analysis
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Validation of a High-Throughput Multiplex Genetic Detection System for Helicobacter pylori Identification, Quantification, Virulence, and Resistance Analysis

机译:高通量多重遗传检测系统对幽门螺杆菌的鉴定,定量,毒力和耐药性分析的验证

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Helicobacter pylori ( H. pylori ) infection is closely related to various gastroduodenal diseases. Virulence factors and bacterial load of H. pylori are associated with clinical outcomes, and drug-resistance severely impacts the clinical efficacy of eradication treatment. Existing detection methods are low-throughput, time-consuming and labor intensive. Therefore, a rapid and high-throughput method is needed for clinical diagnosis, treatment, and monitoring for H. pylori . High-throughput Multiplex Genetic Detection System (HMGS) assay was established to simultaneously detect and analyze a set of genes for H. pylori identification, quantification, virulence, and drug resistance by optimizing the singlet-PCR and multiple primers assay. Twenty-one pairs of chimeric primers consisted of conserved and specific gene sequences of H. pylori tagged with universal sequence at the 5′ end were designed. Singlet-PCR assay and multiple primers assay were developed to optimize the HMGS. The specificity of HMGS assay was evaluated using standard H. pylori strains and bacterial controls. Six clinical isolates with known genetic background of target genes were detected to assess the accuracy of HMGS assay. Artificial mixed pathogen DNA templates were used to evaluate the ability to distinguish mixed infections using HMGS assay. Furthermore, gastric biopsy specimens with corresponding isolated strains were used to assess the capability of HMGS assay in detecting biopsy specimens directly. HMGS assay was specific for H. pylori identification. HMGS assay for H. pylori target genes detection were completely consistent with the corresponding genetic background. Mixed infection with different drug-resistant isolates of H. pylori could be distinguished by HMGS assay. HMGS assay could efficiently diagnose H. pylori infection in gastric biopsy specimens directly. HMGS assay is a rapid and high throughput method for the simultaneous identification and quantification of H. pylori , analysis of virulence and drug resistance in both isolated strains and biopsy specimens. It could also be used to distinguish the mixed infection with different resistant genotype strains. Furthermore, HMGS could detect H. pylori infection in gastric biopsy specimens directly.
机译:幽门螺杆菌(H. pylori)感染与各种胃十二指肠疾病密切相关。幽门螺杆菌的毒力因子和细菌载量与临床结果有关,耐药性严重影响根除治疗的临床效果。现有的检测方法吞吐量低,费时且劳动强度大。因此,需要快速且高通量的方法用于幽门螺杆菌的临床诊断,治疗和监测。建立了高通量多重遗传检测系统(HMGS)分析,以通过优化单线PCR和多重引物分析来同时检测和分析用于幽门螺杆菌鉴定,定量,毒力和耐药性的一组基因。设计了21对嵌合引物,其由在5'端标记有通用序列的幽门螺杆菌的保守和特异性基因序列组成。开发了单峰PCR分析和多引物分析以优化HMGS。使用标准幽门螺杆菌菌株和细菌对照评估HMGS测定的特异性。检测了六种具有已知靶基因遗传背景的临床分离株,以评估HMGS测定的准确性。人工混合病原体DNA模板用于评估使用HMGS分析区分混合感染的能力。此外,使用胃活检标本和相应的分离菌株来评估HMGS分析直接检测活检标本的能力。 HMGS测定对幽门螺杆菌的鉴定具有特异性。用于幽门螺杆菌靶基因检测的HMGS测定与相应的遗传背景完全一致。 HMGS检测可区分幽门螺杆菌不同耐药菌株的混合感染。 HMGS检测可以直接诊断胃活检标本中的幽门螺杆菌感染。 HMGS测定法是一种快速,高通量的方法,用于同时鉴定和定量幽门螺杆菌,分析分离菌株和活检标本中的毒力和耐药性。它也可用于区分具有不同抗性基因型菌株的混合感染。此外,HMGS可以直接检测胃活检标本中的幽门螺杆菌感染。

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