Individuals taking warfarin often need frequent dose changes as the international normalized ratio (INR) gets too high or too low which could result in a higher risk of thromboembolism, bleeding and early discontinuation of a highly useful therapy. This study will compare two approaches to warfarin dosing to examine the utility of using genetic information for warfarin dosing.
The objective of the Clarification of Optimal Anticoagulation through Genetics (COAG) trial is to conduct a 1,022 participant, multicenter, double-blind, randomized trial comparing two approaches to guiding warfarin therapy initiation: 1) initiation of warfarin therapy based on algorithms using clinical information and an individual's genotype using genes known to influence warfarin response ("genotype-guided dosing"), and 2) initiation of warfarin therapy based on algorithms using only clinical information ("clinical-guided dosing"). The study hypothesis is that the use of genetic and clinical information for selecting the dose of warfarin during the initial dosing period will lead to improvement in stability of anticoagulation(AC) relative to a strategy that incorporates only clinical information (without genetics) for initial dosing. Each study arm will include a baseline dose initiation algorithm and a dose revision algorithm applied over the first 4 to 5 doses of warfarin therapy. By comparing the two strategies in this trial, the study will be able to determine if genetic information provides added benefit above and beyond what can be gleaned simply with clinical information. This study is a proof-of-concept efficacy trial. Efficacy is defined as a measure of whether, under optimal application, dosing algorithms will lead to improvement in care. The trial will thus answer the question: "can the use of clinical plus genetic information lead to an improvement in anticoagulation control above and beyond the use of only clinical information during the initiation of warfarin, when applied in a uniform and optimal manner to all patients?" Because efficacy has not yet been established for genotype-guided dosing of warfarin, it is important to first test whether this approach can, indeed, improve anticoagulation outcomes under controlled conditions.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Initial dosing of warfarin for the first 3-4 days of treatment will be determined by an algorithm that uses clinical and genetic information. Following this initiation dose of warfarin, a second dose adjustment will be made after 3 and/or 4 doses of warfarin using a dose revision algorithm that incorporates the clinical and genetic information.
Initial dosing of warfarin for the first 3-4 days of treatment will be determined by an algorithm that uses clinical information. Following this initiation dose of warfarin, a second dose adjustment will be made after 3 and/or 4 doses of warfarin using a dose revision algorithm that incorporates the clinical information.
University of Alabama at Birmingham
Birmingham, Alabama, United States
University of California San Francisco
San Francisco, California, United States
Percentage of time participants spend within the therapeutic INR range (PTTR)
Time frame: Measured during the first 4 weeks of therapy
Occurrence of INR greater than 4 or serious clinical event
Time frame: Measured during the first 4 weeks
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Masking
TRIPLE
Enrollment
1,015
University of Florida
Gainesville, Florida, United States
Georgia Health Sciences University
Augusta, Georgia, United States
Tulane University Health Science Center
New Orleans, Louisiana, United States
University of Maryland School of Medicine
Baltimore, Maryland, United States
Henry Ford Hospital
Detroit, Michigan, United States
Mayo Clinic College of Medicine
Rochester, Minnesota, United States
Washington University School of Medicine
St Louis, Missouri, United States
Mount Sinai School of Medicine
New York, New York, United States
...and 8 more locations