Key result
Ketoconazole co-administration increased ticagrelor AUC by 632%, while diltiazem increased AUC by 174%, indicating strong CYP3A inhibitors should not be co-administered with ticagrelor.
Why the study?
Does co-administration of diltiazem or ketoconazole alter the pharmacokinetics of ticagrelor in healthy volunteers?
RCT (n=34)
Open-label
Randomized
No
Does co-administration of diltiazem or ketoconazole alter the pharmacokinetics of ticagrelor in healthy volunteers?
Effect estimate: GLS mean ratio 7.32 (95% CI 6.43-8.34)
Absolute Event Rate: 26640% vs 3640%
Ticagrelor can be co-administered with moderate CYP3A inhibitors like diltiazem, but co-administration with strong CYP3A inhibitors like ketoconazole significantly increases ticagrelor exposure and is not recommended.
Alerts to avoid strong CYP3A inhibitors with ticagrelor; extends PK data but leaves outcome effects open.
OBJECTIVES: Two open-label, two-period, crossover studies in healthy volunteers were designed to determine the pharmacokinetic interactions between ticagrelor, a P2Y12 receptor antagonist, and a moderate (diltiazem) and a strong (ketoconazole) cytochrome P450 (CYP) 3A inhibitor. METHODS: Seventeen volunteers received diltiazem (240 mg once daily) for 14 days. In the second study, ketoconazole (n = 14) 200 mg twice daily was given for 10 days. A single oral 90-mg ticagrelor dose was administered on day 8 (diltiazem) or day 4 (ketoconazole). In each study, volunteers received a single 90-mg oral dose of ticagrelor before or after washout (≥14 days). Pharmacokinetic parameters for ticagrelor, AR-C124910XX (primary metabolite), diltiazem, and ketoconazole were assessed. RESULTS: Compared with ticagrelor alone, diltiazem co-administration significantly increased the mean maximum concentration (C max) and mean area under the plasma concentration-time curve (AUC) for ticagrelor by 69% and 174%, respectively. Diltiazem co-administration reduced C max by 38% but had no significant effect on AUC for AR-C124910XX. C max and AUC for ticagrelor were increased by 135% and 632%, respectively, by ketoconazole co-administration, whereas these parameters were reduced by 89% and 56%, respectively, for AR-C124910XX. Diltiazem and ketoconazole pharmacokinetic parameters were not significantly affected by the presence of ticagrelor. CONCLUSIONS: These results suggest that ticagrelor can be co-administered with moderate CYP3A inhibitors. However, co-administration of strong CYP3A inhibitors with ticagrelor is not recommended.
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Teng et al. (2013) conducted an RCT in Healthy volunteers (n=34). Ketoconazole or Diltiazem vs. Ticagrelor alone was evaluated on Ticagrelor AUC (area under the plasma concentration-time curve) with ketoconazole (GLS mean ratio 7.32, 95% CI 6.43-8.34). Ketoconazole co-administration increased ticagrelor AUC by 632%, while diltiazem increased AUC by 174%, indicating strong CYP3A inhibitors should not be co-administered with ticagrelor.
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