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March 26, 2014The Journal of Clinical Pharmacology109 citations

Population pharmacokinetics and pharmacodynamics of rivaroxaban in patients with non‐valvular atrial fibrillation: Results from ROCKET AF

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IGIhab GirgisMPManesh R. PatelGPGary Peters

Key Result

Rivaroxaban population pharmacokinetic and pharmacodynamic models adequately described the data in 161 patients with non-valvular atrial fibrillation, confirming the dose selection for ROCKET AF.

Key Points

  • This research aims to characterize the population pharmacokinetics and pharmacodynamics of rivaroxaban in patients with non-valvular atrial fibrillation and confirm previous model findings.
  • Compared two rivaroxaban dosing regimens (20 mg and 15 mg) against warfarin for stroke prevention.
  • Analyzed population pharmacokinetic (PK) and pharmacodynamic (PD) modeling data from 161 patients.
  • Investigated the effects of age, renal function, and lean body mass on PK/PD models.
  • Rivaroxaban pharmacokinetics were adequately described by a one-compartment model with first-order absorption.
  • Age and renal function had moderate effects on PK/PD models, influencing prothrombin time and factor Xa activity.
  • Confirmed the adequacy of PK and PK/PD models for the current atrial fibrillation population dataset.

Study Design

Type

Observational (n=161)

Structured PICO

What are the population pharmacokinetic and pharmacodynamic characteristics of rivaroxaban in patients with non-valvular atrial fibrillation?

P
Population
161 patients with non-valvular atrial fibrillation from the ROCKET AF trial
I
Intervention
Rivaroxaban 20 mg once daily (for normal/mildly impaired renal function) or 15 mg once daily (for moderate renal impairment)
C
Comparator
Warfarin (as part of the main ROCKET AF trial design, though this analysis focuses on rivaroxaban PK/PD)
O
Outcome
Pharmacokinetic (PK) and pharmacodynamic (PD) modeling parameters (prothrombin time, prothrombinase-induced clotting time, factor Xa activity)surrogate

This PK/PD modeling study confirms the appropriateness of the rivaroxaban dosing regimens (20 mg and 15 mg daily based on renal function) used in the ROCKET AF trial for stroke prevention in atrial fibrillation.

Abstract

Two once-daily rivaroxaban dosing regimens were compared with warfarin for stroke prevention in patients with non-valvular atrial fibrillation in ROCKET AF: 20 mg for patients with normal/mildly impaired renal function and 15 mg for patients with moderate renal impairment. Rivaroxaban population pharmacokinetic (PK)/pharmacodynamic (PD) modeling data from ROCKET AF patients (n = 161) are reported and are used to confirm established rivaroxaban PK and PK/PD models and to re-estimate values of the models' parameters for the current AF population. An oral one-compartment model with first-order absorption adequately described rivaroxaban PK. Age, renal function, and lean body mass influenced the PK model. Prothrombin time and prothrombinase-induced clotting time exhibited a near-linear relationship with rivaroxaban plasma concentration; inhibitory effects were observed through to 24 hours post-dose. Rivaroxaban plasma concentration and factor Xa activity had an inhibitory maximum-effect (Emax ) relationship. Renal function (on prothrombin time; prothrombinase-induced clotting time) and age (on factor Xa activity) had moderate effects on PK/PD models. PK and PK/PD models were shown to be adequate for describing the current dataset. These findings confirm the modeling and empirical results that led to the selection of doses tested against warfarin in ROCKET AF.

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Cite This Study

Girgis et al. (2014) conducted an observational in non-valvular atrial fibrillation (n=161). Rivaroxaban vs. Warfarin was evaluated on Pharmacokinetic and pharmacodynamic parameters. Rivaroxaban population pharmacokinetic and pharmacodynamic models adequately described the data in 161 patients with non-valvular atrial fibrillation, confirming the dose selection for ROCKET AF.

synapsesocial.com/papers/6a0cfa1fb31ab1d6e01e7372https://doi.org/10.1002/jcph.288
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