Background: Helicobacter pylori infection has been shown to be associated with the development of gastric cancer and peptic ulcer diseases. Eradication of H. pylori infection could reduce the occurence or recurrence of these diseases. However, the eradication rate of clarithromycin-based triple therapy has been declining in recent years, probably related to the increasing resistant rate to clarithromycin. It was estimated that 15-20% of patients would fail from first line standard eradication therapy and need second line rescue therapy. About 15-30% of patient would fail from second line therapy and need to be rescued with third line therapy. In recent years, the concept of sequential therapy has been advocated in the treatment of H. pylori infection. The regimen includes a PPI plus amoxicillin for five days, followed by a PPI plus clarithromycin and tinidazole for another five days. The eradication rate in the first line treatment of sequential therapy had been reported to be as high as 90%. More importantly, it has been demonstrated that the eradication rate among patients with clarithromycin-resistant strains could be as high as 89%. However, tinidazole is not available in many countries. Whether metronidazole would be an effective alternative to tinidazole in the sequential therapy remains unknown. Besides, whether extending the duration of sequential therapy from 10-day to 14-day would result in higher eradication rate also deserves further investigation. Furthermore, data on the efficacy of rescue regimens for patients who failed from first line sequential therapy are also lacking. The impact of clarithromycin, metronidazole resistance and CYP2C19 polymorphism on the sequential therapy containing metronidazole (rather than tinidazole) also has not been reported. Aims: Therefore, we aim to assess 1. whether the substitution of metronidazole for tinidazole in the sequential therapy is also more effective than clarithromycin-based triple therapy 2. whether extending the duration of sequential therapy from 10-day to 14-day would achieve higher eradication rate 3. whether levofloxacin-based sequential therapy for 14-days is effective as second line rescue regimen for those who failed from first line sequential therapy 4. the impact of antibiotic resistance and CYP2C19 polymorphism on the eradication rate of sequential therapy
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
900
D1-D7: (lansoprazole 30mg + amoxicillin 1gm) bid D8-D14: (lansoprazole 30mg + clarithromycin 500mg + metronidazole 500mg) bi
D1-D5: (lansoprazole 30mg + amoxicillin 1gm) bid D6-D10: (lansoprazole 30mg+clarithromycin 500mg+metronidazole 500mg) bid
D1-D14: (lansoprazole 30mg + clarithromycin 500mg + amoxicillin 1gm) bid
National Taiwan University Hospital
Taipei, Taiwan
Eradication rate according to Intention to treat (ITT) and per-protocol (PP) analysis
Time frame: 6 weeks after eradication therapy
The impact of antibiotic resistance and CYP2C19 polymorphism on the eradication rate of sequential therapy
Time frame: 6 weeks after eradication therapy
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