Key result
In patients initiating warfarin therapy, CYP2C9 genotype, kidney function, and gender independently determined S-warfarin clearance, while VKORC1 genotype, indication, vitamin K status, CYP4F2 genotype, and weight determined pharmacodynamic sensitivity.
Cohort (n=167)
Yes
Genetic and clinical factors, including the specific indication for anticoagulation, independently determine warfarin pharmacokinetics and pharmacodynamics during initiation.
May inform initial warfarin dosing models; extends prior evidence but remains hypothesis-generating pending randomized validation.
Variable warfarin response during treatment initiation poses a significant challenge to providing optimal anticoagulation therapy. We investigated the determinants of initial warfarin response in a cohort of 167 patients. During the first nine days of treatment with pharmacogenetics-guided dosing, S-warfarin plasma levels and international normalized ratio were obtained to serve as inputs to a pharmacokinetic-pharmacodynamic (PK-PD) model. Individual PK (S-warfarin clearance) and PD (I(max)) parameter values were estimated. Regression analysis demonstrated that CYP2C9 genotype, kidney function, and gender were independent determinants of S-warfarin clearance. The values for I(max) were dependent on VKORC1 and CYP4F2 genotypes, vitamin K status (as measured by plasma concentrations of proteins induced by vitamin K absence, PIVKA-II) and weight. Importantly, indication for warfarin was a major independent determinant of I(max) during initiation, where PD sensitivity was greater in atrial fibrillation than venous thromboembolism. To demonstrate the utility of the global PK-PD model, we compared the predicted initial anticoagulation responses with previously established warfarin dosing algorithms. These insights and modeling approaches have application to personalized warfarin therapy.
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Gong et al. (2011) conducted a cohort in Atrial fibrillation or venous thromboembolism requiring warfarin therapy (n=167). Warfarin was evaluated on Determinants of S-warfarin clearance and maximal inhibitory factor (Imax). In patients initiating warfarin therapy, CYP2C9 genotype, kidney function, and gender independently determined S-warfarin clearance, while VKORC1 genotype, indication, vitamin K status, CYP4F2 genotype, and weight determined pharmacodynamic sensitivity.
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