Biofilm demolition and antibiotic treatment to eradicate resistant Helicobacter pylori: a clinical trial.
Study Design
- Tipo de Estudo
- Randomized Controlled Trial
- População
- None
- Intervenção
- Biofilm demolition and antibiotic treatment to eradicate resistant Helicobacter pylori: a clinical trial. None
- Comparador
- None
- Desfecho Primário
- the h pylori eradication rate as assessed by (13)c-labeled urea breath testing
- Direção do Efeito
- Mixed
- Risco de Viés
- Moderate
Abstract
BACKGROUND & AIMS: Helicobacter pylori attaches to gastric mucosa and grows as a biofilm. This constitutes protection from antimicrobial agents. We assessed the role of a pretreatment with n-acetylcysteine in destroying biofilm and overcoming H pylori antibiotic resistance. METHODS: In an open-label, randomized controlled trial, 40 subjects with a history of at least 4 H pylori eradication failures were evaluated for biofilm presence, antibiotic susceptibility, and H pylori genotypes. Subjects were assigned randomly to receive (group A) or not (group B) n-acetylcysteine before a culture-guided antibiotic regimen. The primary end point was the H pylori eradication rate as assessed by (13)C-labeled urea breath testing. RESULTS: H pylori was eradicated in 13 of 20 (both per-protocol and intention-to-treat analyses, 65%; 95% confidence interval, 44%-86%) group A participants and 4 of 20 (both per-protocol and intention-to-treat analyses, 20%; 95% confidence interval, 3%-37%) group B participants (P < .01). Biofilms persisted only in unsuccessfully treated participants. H pylori genotypes did not influence treatment outcome. CONCLUSIONS: N-acetylcysteine pretreatment before a culture-guided antibiotic regimen is effective in overcoming H pylori antibiotic resistance.
Resumo Rápido
N-acetylcysteine pretreatment before a culture-guided antibiotic regimen is effective in overcoming H pylori antibiotic resistance.
Used In Evidence Reviews
Similar Papers
Digestion · 2016
Reduced Abundance of Butyrate-Producing Bacteria Species in the Fecal Microbial Community in Crohn's Disease.
Gut · 1996
Evaluating the antioxidant potential of new treatments for inflammatory bowel disease using a rat model of colitis.
Journal of nanobiotechnology · 2022
Oral administration of turmeric-derived exosome-like nanovesicles with anti-inflammatory and pro-resolving bioactions for murine colitis therapy.
Frontiers in endocrinology · 2024
The emerging role of oxidative stress in inflammatory bowel disease.
The British journal of nutrition · 2012
Omega-3 fatty acids and inflammatory bowel diseases - a systematic review.
Helicobacter · 2007