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Updated: Sep 27, 2025

Stress-induced Antibiotic Susceptibility Testing on a Chip
Published on: January 8, 2014
Interplay between Amoxicillin Resistance and Osmotic Stress in Helicobacter pylori
Ian H Windham1, D Scott Merrell1
1Department of Microbiology and Immunology, Uniformed Services University of the Health Sciencesgrid.265436.0, Bethesda, Maryland, USA.
Abstract:
Rising antibiotic resistance rates are a growing concern for all pathogens, including Helicobacter pylori. We previously examined the association of specific mutations in PBP1 with amoxicillin resistance and fitness in H. pylori and found that V374L and N562Y mutations were associated with resistance, but also resulted in fitness defects. Furthermore, we found that hyperosmotic stress differentially altered the fitness of strains bearing these mutations; survival of the V374L strain was decreased by hyperosmotic stress, but the N562Y strain showed increased cell survival relative to that of wild-type G27. The finding that amoxicillin-resistant strains show environmentally dictated changes in fitness suggests a previously unexplored interaction between amoxicillin resistance and osmotic stress in H. pylori. Here, we further characterized the interaction between osmotic stress and amoxicillin resistance. Wild-type and isogenic PBP1 mutant strains were exposed to amoxicillin, various osmotic stressors, or combined antibiotic and osmotic stress, and viability was monitored. While subinhibitory concentrations of NaCl did not affect H. pylori viability, the combination of NaCl and amoxicillin resulted in synergistic killing; this was true even for the antibiotic-resistant strains. Moreover, similar synergy was found with other beta-lactams, but not with antibiotics that did not target the cell wall. Similar synergistic killing was also demonstrated when KCl was utilized as the osmotic stressor. Conversely, osmolar equivalent concentrations of sucrose antagonized amoxicillin-mediated killing. Taken together, our results support a previously unrecognized interaction between amoxicillin resistance and osmotic stress in H. pylori. These findings have interesting implications for the effectiveness of antibiotic therapy for this pathogen. IMPORTANCE Rising antibiotic resistance rates in H. pylori are associated with increased rates of treatment failure. Understanding how stressors impact antibiotic resistance may shed light on the development of future treatment strategies. Previous studies found that mutations in PBP1 that conferred resistance to amoxicillin were also associated with a decrease in bacterial fitness. The current study demonstrated that osmotic stress can enhance beta lactam-mediated killing of H. pylori. The source of osmotic stress was found to be important for these interactions. Given that relatively little is known about how H. pylori responds to osmotic stress, these findings fill important knowledge gaps on this topic and provide interesting implications for the effectiveness of antibiotic therapy for this pathogen.
Insights
Antibiotic resistance in Helicobacter pylori is a growing concern. This study reveals that osmotic stress synergistically enhances the killing effect of amoxicillin, even in resistant strains, impacting treatment strategies.
Area of Science:
- Microbiology
- Molecular Biology
- Drug Resistance
Background:
- Rising antibiotic resistance rates in Helicobacter pylori (H. pylori) contribute to treatment failures.
- Previous research linked PBP1 mutations to amoxicillin resistance and fitness defects in H. pylori.
- Environmental stressors like osmotic stress were found to differentially affect the fitness of resistant H. pylori strains.
Purpose of the Study:
- To investigate the interaction between osmotic stress and amoxicillin resistance in H. pylori.
- To determine how different osmotic stressors and beta-lactam antibiotics affect H. pylori viability.
- To explore the implications of these interactions for antibiotic therapy effectiveness.
Main Methods:
- Exposure of wild-type and PBP1 mutant H. pylori strains to amoxicillin, osmotic stressors (NaCl, KCl, sucrose), or combined treatments.
- Monitoring bacterial viability under various stress conditions.
- Comparing the effects of different beta-lactam antibiotics and non-cell wall targeting antibiotics.
Main Results:
- Subinhibitory NaCl concentrations combined with amoxicillin demonstrated synergistic killing of H. pylori, including antibiotic-resistant strains.
- This synergistic killing effect was observed with other beta-lactams but not with non-cell wall targeting antibiotics.
- KCl mimicked NaCl's synergistic killing effect, while sucrose antagonized amoxicillin's killing activity.
- The source of osmotic stress significantly influenced the interaction with amoxicillin resistance.
Conclusions:
- A previously unrecognized interaction exists between amoxicillin resistance and osmotic stress in H. pylori.
- Osmotic stress can significantly enhance the efficacy of beta-lactam antibiotics against H. pylori.
- These findings highlight the importance of environmental factors in antibiotic resistance and have implications for H. pylori treatment strategies.
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