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Published on: June 11, 2015
Resistome and virulome determination in Helicobacter pylori using next-generation sequencing with target-enrichment
Léo Gillet1, Lucie Bénéjat1, Quentin Jehanne1
1CHU de Bordeaux, CNR des Campylobacters et des Hélicobacters, Bordeaux, France.
Abstract:
The identification of Helicobacter pylori infection from gastric biopsy samples requires PCR or bacterial cultures. However, it is difficult to culture H. pylori because it is a fragile bacterium. Next-generation sequencing (NGS) allows direct assessment of the resistome and virulome. Here we describe a new NGS method for studying the resistome and virulome of H. pylori directly from gastric biopsies, based on enrichment analyses and targeted sequencing of H. pylori DNA. In all, 19 DNA samples from human gastric biopsies that tested positive for H. pylori were analyzed. The Agilent SureSelectXT target-enrichment protocol was used with a custom bait library prior to sequencing using the Agilent MagnisDx NGS Library Prep System. NGS sequencing was performed on the Illumina iSeq 100 sequencer using RNA probes for virulence, resistance, and molecular typing genes. The method yielded significant results with a limit of detection of around 1.8e5 CFU per mL H. pylori. Mutations in the 23S rDNA sequence associated with macrolide resistance and in the quinolone resistance-determining region of gyrase A associated with levofloxacin resistance were correctly identified. The results of MLST phylogeny analyses performed after target-enrichment were consistent with those obtained via conventional Sanger sequencing. Among the cagA-positive isolates, the gene was detected correctly, and the vacA genotype was determined. In conclusion, our enrichment method enables rapid assessment of the resistome and virulome of H. pylori directly from fresh gastric biopsies.IMPORTANCEHelicobacter pylori, a bacterium that infects at least 50% of the world population, is often treated by probabilistic antimicrobial therapies due to the lack of antimicrobial resistance data provided by clinical laboratories to clinicians. However, targeted antimicrobial therapies are increasingly recommended to achieve efficient eradication with a limited impact on the gut microbiota and with fewer adverse events for the patient. Recent advancements in next-generation sequencing strategies have opened new opportunities in the diagnosis of H. pylori infection. The significance of our research is the development of a novel next-generation sequencing strategy based on target-enrichment. This approach enables the identification of the resistome and the virulome of H. pylori directly from gastric biopsies, providing clinicians with a broad overview of therapeutic options.
Insights
A new next-generation sequencing (NGS) method allows rapid assessment of Helicobacter pylori's antibiotic resistance and virulence directly from gastric biopsies. This approach aids in selecting targeted therapies for H. pylori infections.
Area of Science:
- Microbiology and Infectious Diseases
- Genomics and Molecular Diagnostics
Background:
- Helicobacter pylori infection affects over 50% of the global population, often treated with broad-spectrum antibiotics due to limited resistance data.
- Fragility of H. pylori makes traditional culture methods challenging for accurate diagnosis and resistance profiling.
- Next-generation sequencing (NGS) offers potential for direct assessment of bacterial genetic traits, including antimicrobial resistance and virulence factors.
Purpose of the Study:
- To develop and validate a novel NGS-based method for direct analysis of the H. pylori resistome and virulome from gastric biopsies.
- To enable rapid identification of genetic markers associated with antibiotic resistance and key virulence factors in H. pylori.
Main Methods:
- A targeted sequencing approach using DNA enrichment was employed on 19 gastric biopsy samples positive for H. pylori.
- The Agilent SureSelectXT protocol with a custom bait library was used, followed by sequencing on an Illumina iSeq 100 platform.
- RNA probes were utilized for sequencing virulence, resistance, and molecular typing genes.
Main Results:
- The developed NGS method achieved a limit of detection of approximately 1.8e5 CFU/mL for H. pylori.
- Accurate identification of mutations linked to macrolide and levofloxacin resistance was demonstrated.
- MLST phylogeny, cagA detection, and vacA genotyping results were consistent with conventional methods, validating the enrichment strategy.
Conclusions:
- The novel enrichment-based NGS method provides a rapid and effective means to assess the H. pylori resistome and virulome directly from gastric biopsies.
- This approach facilitates informed, targeted antimicrobial therapy selection, improving H. pylori eradication rates and patient outcomes.
- The method offers a significant advancement over traditional culture techniques, addressing the limitations in clinical diagnostics for H. pylori infections.
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