Sickle cell disease (SCD) is often referred to as a hypercoagulable state. However, the contribution of coagulation activation to the pathogenesis of SCD remains uncertain. Pulmonary hypertension (PHT) is a common complication associated with significant morbidity and mortality. Autopsy studies of SCD patients with PHT show evidence of in situ thrombosis involving pulmonary vessels, similar to findings in non-sickle cell patients with PHT. Anticoagulation has been reported to be of benefit in non-sickle cell patients with PHT. With the evidence of increased coagulation activation in SCD, PHT represents a clinical endpoint that may be used to evaluate the contribution of coagulation activation to the pathophysiology of SCD. The investigators hypothesize that increased thrombin generation, as well as platelet activation are central to the pathophysiology of SCD and contribute to the occurrence of several SCD-related complications, including PHT. As a consequence, treatment modalities that down-regulate thrombin generation would be expected to delay the progression of PHT and result in improved survival in patients with SCD.
As a result of the presence of large vessel thrombotic complications, as well as the biochemical evidence of ongoing coagulation activation, sickle cell disease (SCD) is often referred to as a hypercoagulable state. However, the contribution of coagulation activation to the pathogenesis of SCD remains uncertain. While the majority of clinical studies using anticoagulants have shown no convincing benefit in the prevention or treatment of acute pain episodes, most of these studies were small and poorly controlled. Furthermore, because the acute pain episode appears to result from the occlusion of postcapillary venules by the interaction of red blood cells and other cellular elements with the vascular endothelium and subendothelial matrix proteins, it may not be the ideal clinical endpoint for assessing the effect of anticoagulation in SCD patients. Pulmonary hypertension (PHT), a common complication associated with significant morbidity and mortality, and with histopathologic findings of in situ thrombosis involving pulmonary vessels, represents a clinical endpoint that is likely due, at least in part, to increased thrombin generation, and may therefore be used to evaluate the contribution of coagulation activation to the pathophysiology of SCD. Twenty patients with sickle cell anemia (HbSS) or sickle beta zero thalassemia (Sickle beta zero thalassemia) and mild PHT who meet the eligibility requirements will be enrolled, 10 patients to receive anticoagulation with warfarin and 10 to receive placebo rfor 12 months of treatment.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
TRIPLE
Enrollment
3
University of North Carolina
Chapel Hill, North Carolina, United States
Effect of Anticoagulation on Pulmonary Artery Systolic Pressure Was Obtained by Doppler Echocardiography
We determined the effect of anticoagulation with warfarin on estimated pulmonary artery systolic pressure obtained by Doppler echocardiography. The presented data are average values for the study subjects in the treatment group. When data was missing, the previous value was carried forward.
Time frame: Measurements were obtained at Screening, and at Months 3, 6, 9, and 12
6-minute Walk Test
We evaluated the distance walked over 6 minutes. The presented data are average values for the study subjects in the treatment group. When data was missing, the previous value was carried forward.
Time frame: Measurements were obtained at Screening, Months 3, 6, 9, and 12
Thrombin Generation
We evaluated the effect of warfarin on a plasma measure of thrombin generation (thrombin-antithrombin complex)
Time frame: Measurements were obtained at Screening, and at Months 3, 6, 9, and 12
Platelet Activation
We evaluated the effect of anticoagulation with warfarin on platelet activation assessed by measuring plasma levels of soluble CD40 ligand
Time frame: Measurements were obtained at Screening, Prior to Run-in, and at Months 3, 6, 9, and 12
Endothelial Activation
We assessed the effect of warfarin on plasma measures of endothelial activation (soluble vascular cell adhesion molecule-1)
Time frame: Measurements were obtained at Screening, and at Months 3, 6, 9, and 12
All-cause Mortality
We assessed the effect of warfarin on mortality in the study subjects
Time frame: Assessment was obtained until completion of study at 12 months
Major and Minor Bleeding Complications
We evaluated the safety of warfarin by evaluating for major and minor bleeding complications in study subjects
Time frame: Evaluations were obtained at Screening, and at Months 3, 6, 9, and 12
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