Interaction between clopidogrel and proton pump inhibitors ========================================================== * Mark H. Friesen The study by David Juurlink and colleagues is a significant contribution to the awareness of potential interactions between clopidogrel and proton pump inhibitors. 1 However, a number of important issues limit the general applicability of the study to clinical practice. Results from a case–control study do not seem to warrant statements regarding causation. For example, the authors stated, “We estimated that about 7.4% of readmissions because of reinfarction … occurred as the result of concomitant therapy with these agents.” 1 Although this study does suggest an association between concomitant therapy and risk of reinfarction, the authors did not demonstrate causation. Higher odds ratios (e.g., > 2) are generally required before the results of case–control studies can be seen to indicate real risk. 2 The authors did not address studies that have reported results that contradict theirs. Although they correctly indicated that Simon and colleagues 3 demonstrated the effect of genetic polymorphisms on clopidogrel, they failed to mention the lack of association between proton pump inhibitors and major cardiovascular events in this study. Although they correctly indicated that Aubert and colleagues 4 demonstrated an increased risk with proton pump inhibitors, they failed to cite another abstract from the same scientific session that found that the benefit of clopidogrel was not diminished by baseline use of proton pump inhibitors. 5 This latter report is of particular interest because it was an analysis of a randomized controlled trial that would have provided better control of confounders than the case–control study by Juurlink and colleagues. The authors did not indicate whether all 3 of the proton pump inhibitors in their study contributed equally to the reported odds ratio of 1.40 for risk of recurrent myocardial infarction within 90 days of hospital discharge. A reasonable case could be made that rabeprazole is sufficiently different from the other 2 agents to justify separate analysis. Both lansoprazole and omeprazole have been shown to inhibit the antiplatelet activity of clopidogrel in vivo. 6,7 To date, no such study has been reported for rabeprazole. In contrast with omeprazole and lansoprazole, rabeprazole is not a potent in vitro inhibitor of cytochrome P450 2C19. 8 In contrast with omeprazole, rabeprazole showed no inhibition in the metabolism of diazepam, a substrate for cytochrome P450 2C19. 9 Although the metabolite rabeprazole thioether is a potent in vitro inhibitor of cytochrome P450 2C19, its concentration in vivo is about 30% of that of its parent compound. 8,10 Given these differences, it is far from clear that rabeprazole would exhibit an interaction potential with clopidogrel comparable to that of omeprazole and lansoprazole. ## Footnotes * **Competing interests:** None declared. ## REFERENCES 1. 1. Juurlink DN, Gomes T, Ko DT, et al. A population-based study of the drug interaction between proton pump inhibitors and clopidogrel. CMAJ 2009;180:713–8. [Abstract/FREE Full Text](http://www.cmaj.ca/lookup/ijlink/YTozOntzOjQ6InBhdGgiO3M6MTQ6Ii9sb29rdXAvaWpsaW5rIjtzOjU6InF1ZXJ5IjthOjQ6e3M6ODoibGlua1R5cGUiO3M6NDoiQUJTVCI7czoxMToiam91cm5hbENvZGUiO3M6NDoiY21haiI7czo1OiJyZXNpZCI7czo5OiIxODAvNy83MTMiO3M6NDoiYXRvbSI7czoyNDoiL2NtYWovMTgwLzEyLzEyMjguMS5hdG9tIjt9czo4OiJmcmFnbWVudCI7czowOiIiO30=) 2. 2. Levine M, Waiter S, Lee H, et al. Users’ guides to the medical literature IV. How to use an article about harm. JAMA 1994;271:1615–9. [CrossRef](http://www.cmaj.ca/lookup/external-ref?access_num=10.1001/jama.1994.03510440075037&link_type=DOI) [PubMed](http://www.cmaj.ca/lookup/external-ref?access_num=8182815&link_type=MED&atom=%2Fcmaj%2F180%2F12%2F1228.1.atom) [Web of Science](http://www.cmaj.ca/lookup/external-ref?access_num=A1994NL75800032&link_type=ISI) 3. 3. Simon T, Verstuyft C, Mary-Krause M, et al. Genetic determinants of response to clopidogrel and cardiovascular response. N Engl J Med 2009;360: 363–75. [CrossRef](http://www.cmaj.ca/lookup/external-ref?access_num=10.1056/NEJMoa0808227&link_type=DOI) [PubMed](http://www.cmaj.ca/lookup/external-ref?access_num=19106083&link_type=MED&atom=%2Fcmaj%2F180%2F12%2F1228.1.atom) [Web of Science](http://www.cmaj.ca/lookup/external-ref?access_num=000262519900008&link_type=ISI) 4. 4. Aubert RE, Epstein RS, Teagarden JR, et al. Proton pump inhibitors effect on clopidogrel effectiveness: the Clopidogrel Medco Outcomes Study. *Circulation* 2008;118:S_815. 5. 5. Dunn SP, Macaulay TE, Brennan DM, et al. Baseline proton pump inhibitor use is associated with increased cardiovascular events with and without the use of clopidogrel in the CREDO trial. *Circulation* 2008;118:S_815. 6. 6. Small DS, Farid NA, Payne CD, et al. Effects of the proton pump inhibitor lansoprazole on the pharmacokinetics and pharmacodynamics of prasugrel and clopidogrel. J Clin Pharmacol 2008;48:475–84. [CrossRef](http://www.cmaj.ca/lookup/external-ref?access_num=10.1177/0091270008315310&link_type=DOI) [PubMed](http://www.cmaj.ca/lookup/external-ref?access_num=18303127&link_type=MED&atom=%2Fcmaj%2F180%2F12%2F1228.1.atom) [Web of Science](http://www.cmaj.ca/lookup/external-ref?access_num=000254495200008&link_type=ISI) 7. 7. Gilard M, Arnaud B, Cornily JC, et al. Influence of omeprazole on the antiplatelet action of clopidogrel associated with aspirin: the randomized, double-blind OCLA (Omeprazole CLopidogrel Aspirin) study. J Am Coll Cardiol 2008;51:256–60. [CrossRef](http://www.cmaj.ca/lookup/external-ref?access_num=10.1016/j.jacc.2007.06.064&link_type=DOI) [PubMed](http://www.cmaj.ca/lookup/external-ref?access_num=18206732&link_type=MED&atom=%2Fcmaj%2F180%2F12%2F1228.1.atom) 8. 8. Li XQ, Andersson TB, Ahlstrom M, et al. Comparison of inhibitory effects of the proton pump-inhibiting drugs omeprazole, esomeprazole, lansoprazole, pantoprazole, and rabeprazole on human cytochrome P450 activities. Drug Metab Dispos 2004;32:821–7. [Abstract/FREE Full Text](http://www.cmaj.ca/lookup/ijlink/YTozOntzOjQ6InBhdGgiO3M6MTQ6Ii9sb29rdXAvaWpsaW5rIjtzOjU6InF1ZXJ5IjthOjQ6e3M6ODoibGlua1R5cGUiO3M6NDoiQUJTVCI7czoxMToiam91cm5hbENvZGUiO3M6MzoiZG1kIjtzOjU6InJlc2lkIjtzOjg6IjMyLzgvODIxIjtzOjQ6ImF0b20iO3M6MjQ6Ii9jbWFqLzE4MC8xMi8xMjI4LjEuYXRvbSI7fXM6ODoiZnJhZ21lbnQiO3M6MDoiIjt9) 9. 9. Ishizaki T, Chiba K, Manabe K, et al. Comparison of the interaction potential of a new proton pump inhibitor, E3810, versus omeprazole with diazepam in extensive and poor metabolizers of S-mephenytoin 4’-hydroxylation. Clin Pharmacol Ther 1995;58:155–64. [CrossRef](http://www.cmaj.ca/lookup/external-ref?access_num=10.1016/0009-9236(95)90193-0&link_type=DOI) [PubMed](http://www.cmaj.ca/lookup/external-ref?access_num=7648765&link_type=MED&atom=%2Fcmaj%2F180%2F12%2F1228.1.atom) 10. 10. Setoyama T, Drijfhout WJ, van de Merbel NC, et al. Mass balance study of [14C] rabeprazole following oral administration in healthy subjects. Int J Clin Pharmacol Ther 2006;44:557–65. [PubMed](http://www.cmaj.ca/lookup/external-ref?access_num=17176622&link_type=MED&atom=%2Fcmaj%2F180%2F12%2F1228.1.atom)