Relationship between the acid-suppression Efficacy of Proton Pump Inhibitors and CYP2C19 Genetic Polymorphism in Patients with Peptic Ulcer
Chunyan Niu, Jinyan Luo, MU Ni-la, Xueqin Wang
Abstract
Chunyan Niu, Jinyan Luo, MU Ni-la, Xueqin Wang
Abstract
Objective To investigate acid-suppression efficacy of proton pump inhibitors (PPIs) in relation to CYP2C19 genetic polymorphism on patients with peptic ulcer. Methods By an open, randomized and control trial, fifty nine patients with active peptic ulcer were randomly assigned to receive one of three PPIs on a single dose (20 mg of each drug) omeprazole group (n=19), rabeprazole group (n=20) and esomeprazole group (n=20). Intragastric pH was recorded 1 hour before and 24 hours after administration. CYP2C19 genotype was tested in all patients. Results The EMs/PMs ratio of each group was 16/3, 17/3 and 17/3, respectively. The total time that intragastric pH>4, time percent pH>4 and median pH in PMs patients were significantly higher than those in EMs patients of omeprazole group (P<0.05). But all these differences were not found in rabeprazole group and esomeprazole group. The pH of nocturnal acid breakthrough (NAB) in both rabeprazole group and esomeprazole group was higher than that of omeprazole group, while there was no significant difference between rabeprazole group and esomeprazole group. Conclusion The acid-suppression efficacy of omeprazole is highly dependent on CYP2C19 genetic polymorphism, while CYP2C19 genetic polymorphism may have a little influence on the acid-suppression efficacy of rabeprazole and esomeprazole. The acid-suppression action of rabeprazole and esomeprazole is superior to omeprazole, especially on night acid secretion.
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Objective To investigate acid-suppression efficacy of proton pump inhibitors (PPIs) in relation to CYP2C19 genetic polymorphism on patients with peptic ulcer. Methods By an open, randomized and control trial, fifty nine patients with active peptic ulcer were randomly assigned to receive one of three PPIs on a single dose (20 mg of each drug) omeprazole group (n=19), rabeprazole group (n=20) and esomeprazole group (n=20). Intragastric pH was recorded 1 hour before and 24 hours after administration. CYP2C19 genotype was tested in all patients. Results The EMs/PMs ratio of each group was 16/3, 17/3 and 17/3, respectively. The total time that intragastric pH>4, time percent pH>4 and median pH in PMs patients were significantly higher than those in EMs patients of omeprazole group (P<0.05). But all these differences were not found in rabeprazole group and esomeprazole group. The pH of nocturnal acid breakthrough (NAB) in both rabeprazole group and esomeprazole group was higher than that of omeprazole group, while there was no significant difference between rabeprazole group and esomeprazole group. Conclusion The acid-suppression efficacy of omeprazole is highly dependent on CYP2C19 genetic polymorphism, while CYP2C19 genetic polymorphism may have a little influence on the acid-suppression efficacy of rabeprazole and esomeprazole. The acid-suppression action of rabeprazole and esomeprazole is superior to omeprazole, especially on night acid secretion.
Key concepts: Esomeprazole, Rabeprazole, Omeprazole, CYP2C19, Proton-pump inhibitor, Gastroenterology, Internal medicine, Gastric acid