Ximelagatran: pharmacokinetics and pharmacodynamics of a new strategy for oral direct thrombin inhibition.
Dean J. Kereiakes
Abstract
Dean J. Kereiakes
Abstract
Because thrombin is central to the development and propagation of both arterial and venous thrombi, it is a logical therapeutic target. Direct thrombin inhibitors, such as ximelagatran, offer the distinct advantage of inhibiting fibrin-bound as well as free thrombin. The pharmacokinetics and pharmacodynamics of ximelagatran are predictable across a broad spectrum of patients. The half-life of melagatran, ximelagatran's active metabolite, is consistent with twice-daily dosing and fixed-dose administration without the need for monitoring. There have been no known drug interactions with ximelagatran, and the agent is not metabolized by the hepatic cytochrome P-450 system. For these reasons, orally active direct thrombin inhibitors such as ximelagatran will likely become the standard for long-term anticoagulation.
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Because thrombin is central to the development and propagation of both arterial and venous thrombi, it is a logical therapeutic target. Direct thrombin inhibitors, such as ximelagatran, offer the distinct advantage of inhibiting fibrin-bound as well as free thrombin. The pharmacokinetics and pharmacodynamics of ximelagatran are predictable across a broad spectrum of patients. The half-life of melagatran, ximelagatran's active metabolite, is consistent with twice-daily dosing and fixed-dose administration without the need for monitoring. There have been no known drug interactions with ximelagatran, and the agent is not metabolized by the hepatic cytochrome P-450 system. For these reasons, orally active direct thrombin inhibitors such as ximelagatran will likely become the standard for long-term anticoagulation.
Key concepts: Ximelagatran, Medicine, Thrombin, Discovery and development of direct thrombin inhibitors, Pharmacokinetics, Pharmacology, Pharmacodynamics, Direct thrombin inhibitor