The investigators are studying whether an anti-inflammatory intervention improves impaired coronary endothelial function (CEF) in HIV+ people with no clinical coronary artery disease (CAD).
Survival in people with HIV has significantly improved with the use of antiretroviral therapy (ART) but HIV+ people now experience an increasing burden of chronic diseases, including coronary atherosclerosis and coronary artery disease (CAD). HIV patients manifest an increased risk of CAD and its consequences possibly due to interplay of inflammation with traditional risk factors (smoking, high cholesterol, and poor diet), some of the latter accentuated by ART. What the investigators are studying in this program is the function of the coronary arteries and in particular the inner lining of the arteries called the endothelium in patients with HIV. The endothelium has several important functions; one of them is that under conditions of stress it releases a substance called nitric oxide which increases the size of the artery and increases blood flow. When it is not functioning normally the artery does not increase as much and blood flow does not increase during stress. The investigators study coronary artery function with magnetic resonance imaging, or MRI. MRI is a method of obtaining images of what is happening inside the body. MRI does not involve radiation, x-ray, or injection of contrast. The investigators can measure flow in the artery and the dimension of the artery at rest and with a handgrip stress and learn the extent to which the artery dilates and flow increases with the stress. The investigators believe that inflammation can interfere with normal function and that by decreasing inflammation abnormal endothelial function may be improved. Colchicine is an anti-inflammatory agent approved by the Food and Drug Administration (FDA) to treat arthritis and some other conditions. This drug is not approved for use to suppress inflammation in patients with coronary artery disease and improve coronary artery endothelial function. The FDA is allowing the use of colchicine or a placebo in this research study. This study will involve 24 weeks of colchicine or placebo and 3 Magnetic Resonance Imaging (MRI) scans of the heart and other study procedures.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
OTHER
Masking
QUADRUPLE
Enrollment
81
Administered to determine the effect of anti-inflammatory agents on coronary and systemic endothelial function in patients with coronary artery disease.
A substance containing no medication
Johns Hopkins Hospital
Baltimore, Maryland, United States
Coronary Endothelial Function Measured by Percent Change in Coronary Blood Flow With Exercise (%) at 8 Weeks
Percent change in coronary blood flow (CBF) from rest to that during isometric handgrip exercise (IHE) stress at 8 weeks.
Time frame: Difference between measurements at baseline compared to measurement at 8 weeks
Coronary Endothelial Function at 24 Weeks;
Change in coronary blood flow (CBF) from rest to that during isometric handgrip exercise (IHE) stress at 24 weeks.
Time frame: At 24 weeks.
Change in Coronary Artery Cross-sectional Area (CSA) at 8 Weeks
Change in CSA as measured by the difference between CSA at rest and under IHE stress at 8 weeks
Time frame: Difference between measurements at baseline compared to measurement at 8 weeks
Change in Coronary Artery Cross-sectional Area (CSA) at 24 Weeks
Change in CSA as measured by the difference between CSA at rest and under IHE stress at 24 weeks
Time frame: At 24 weeks
High-sensitivity C-reactive Protein (hsCRP) at 8 Weeks.
High-sensitivity C-reactive protein (hsCRP) at 8 weeks
Time frame: At 8 weeks.
Brachial Flow Mediated Dilatation (FMD) at 8 Weeks.
Brachial flow mediated dilatation (FMD) at 8 weeks.
Time frame: At 8 weeks
Interleukin-6 (IL-6) at 8 Weeks
Interleukin-6 (IL-6) at 8 weeks
Time frame: At 8 weeks
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High-sensitivity C-reactive Protein (hsCRP) at 24 Weeks
High-sensitivity C-reactive Protein (hsCRP) at 24 weeks
Time frame: At 24 weeks
Brachial Flow Mediated Dilatation (FMD) at 24 Weeks.
Brachial Flow Mediated Dilatation (FMD) at 24 Weeks.
Time frame: At 24 weeks