Key result
In patients with acute coronary syndromes, presentation with STEMI independently reduced the rate of ticagrelor metabolism into its active metabolite by 6.8% compared to NSTE-ACS.
Why the study?
Do clinical characteristics like STEMI or diabetes mellitus reduce the metabolism of ticagrelor into its active metabolite in patients with acute coronary syndromes?
Observational (n=117)
No
Do clinical characteristics like STEMI or diabetes mellitus reduce the metabolism of ticagrelor into its active metabolite in patients with acute coronary syndromes?
Mean Difference: -6.8 (95% CI -10.9–-2.8)
Absolute Event Rate: 16% vs 23.3%
p-value: p=0.0009
In patients with ACS, the presence of STEMI or diabetes mellitus significantly decreases the early hepatic transformation of ticagrelor into its active metabolite, which may delay its antiplatelet effect.
May prompt PK monitoring in STEMI or diabetic ACS patients; leaves open need for adjusted regimens or outcome trials.
Ticagrelor is a state-of-the-art antiplatelet agent used for the treatment of patients with acute coronary syndromes (ACS). Unlike remaining oral P2Y12 receptor inhibitors ticagrelor does not require metabolic activation to exert its antiplatelet action. Still, ticagrelor is extensively metabolized by hepatic CYP3A enzymes, and AR-C124910XX is its only active metabolite. A post hoc analysis of patient-level (n = 117) pharmacokinetic data pooled from two prospective studies was performed to identify clinical characteristics affecting the degree of AR-C124910XX formation during the first six hours after 180 mg ticagrelor loading dose in the setting of ACS. Both linear and multiple regression analyses indicated that ACS patients presenting with ST-elevation myocardial infarction or suffering from diabetes mellitus are more likely to have decreased rate of ticagrelor metabolism during the acute phase of ACS. Administration of morphine during ACS was found to negatively influence transformation of ticagrelor into AR-C124910XX when assessed with linear regression analysis, but not with multiple regression analysis. On the other hand, smoking appears to increase the degree of ticagrelor transformation in ACS patients. Mechanisms underlying our findings and their clinical significance warrant further research.
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Adamski et al. (2018) conducted an observational in Acute coronary syndromes (n=117). ST-elevation myocardial infarction (STEMI) vs. Non-ST-elevation acute coronary syndrome (NSTE-ACS) was evaluated on Ratio of area under the plasma concentration-time curve for AR-C124910XX to AUC for ticagrelor (AUCM/AUCT) during the first six hours (MD -6.8%, 95% CI -10.9 to -2.8, p=0.0009). In patients with acute coronary syndromes, presentation with STEMI independently reduced the rate of ticagrelor metabolism into its active metabolite by 6.8% compared to NSTE-ACS.
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