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Updated: Apr 15, 2026

A Method to Study the C924T Polymorphism of the Thromboxane A2 Receptor Gene
Published on: April 1, 2019
Pharmacogenetics aspects of oral anticoagulants therapy
F C Militaru1, S C Vesa1, T R Pop2
1Department of Pharmacology, Toxicology and Clinical Pharmacology, "Iuliu Haţieganu" University of Medicine and Pharmacy Cluj-Napoca.
Rationale:
Vitamin K antagonists (VKA), such as warfarin and acenocoumarol, are widely used for the prevention and treatment of thromboembolic diseases and they are some of the most commonly prescribed types of medications. They are characterized by narrow therapeutic indices and inter-individual or intra-individual variability in response to the treatment.
Objective:
to establish the influence of several genetic factors on VKA efficacy and adverse reactions.
Methods And Results:
The metabolism of VKA differs depending on their chemical structure: indandiones derivatives (fluindione) or coumarin derivatives (acenocoumarol, phenprocoumon or warfarin). They are mostly metabolized in hepatocytes via a monooxygenase, cytochrome P450 2C9 (CYP2C9), resulting in inactive products. The gene encoding CYP2C9 is polymorphic, its genetic variants being associated with differences in the enzymatic activity of CYP2C9. The most important in terms of their frequency in the general population are CYP2C9*2 and CYP2C9*3. Both alleles are associated with a marked decrease in CYP2C9 enzyme activity. VK epoxide reductase (VKOR) is an enzyme with an important role in VK metabolism. Various polymorphisms in the VKORC1 gene have been described. VKORC1*2 haplotype seems to be the most important in relation to the variability in response to VKA.
Discussions:
Various studies have shown a relationship between the genotype and the mean warfarin maintenance dosing: in patients carrying 2C9*1/*2 alleles, the dose is reduced by 18-40% in patients carrying 2C9*2/*2 alleles, by 21-49% in patients carrying 2C9*1/*3 alleles. The A allele of the c.-1639G>A polymorphism in the VKORC1 gene is associated with the need for a lower dose of acenocoumarol in patients on anticoagulant therapy.
Abbreviations:
SNP = Single Nucleotide Polymorphism, VKA = vitamin K antagonists, C1 - VKORC1 = vitamin K epoxide reductase complex subunit, INR = International Normalized Ratio.
Insights
Genetic variations in CYP2C9 and VKORC1 significantly impact Vitamin K antagonist (VKA) dosing. Understanding these genetic factors, like CYP2C9*2 and CYP2C9*3 alleles, helps personalize warfarin and acenocoumarol therapy for better efficacy and safety.
Area of Science:
- Pharmacogenomics
- Internal Medicine
- Biochemistry
Background:
- Vitamin K antagonists (VKAs) like warfarin are crucial for preventing thromboembolic diseases but exhibit significant inter-individual variability in response.
- This variability necessitates careful dosing due to narrow therapeutic indices.
Purpose of the Study:
- To investigate the influence of specific genetic factors on the efficacy and adverse reactions of Vitamin K antagonists (VKAs).
Main Methods:
- Analysis of VKA metabolism, focusing on cytochrome P450 2C9 (CYP2C9) and Vitamin K epoxide reductase (VKORC1) enzymes.
- Examination of genetic polymorphisms in CYP2C9 (e.g., CYP2C9*2, CYP2C9*3) and VKORC1 (e.g., VKORC1*2, c.-1639G>A).
Main Results:
- CYP2C9, primarily metabolizing VKAs, exhibits reduced activity with common variants like CYP2C9*2 and CYP2C9*3.
- Polymorphisms in VKORC1, particularly the VKORC1*2 haplotype and the c.-1639G>A polymorphism, are strongly associated with VKA response variability.
Conclusions:
- Patients with CYP2C9*2 or CYP2C9*3 alleles require significantly reduced warfarin maintenance doses.
- The VKORC1 c.-1639G>A polymorphism (A allele) is linked to lower acenocoumarol dosage requirements in patients undergoing anticoagulant therapy.
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