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The purpose of this study is to find out more about the effects of chronic obstructive pulmonary disease (COPD) on the function of blood vessels, the heart, and muscle at rest and during exercise.
Oxidative stress, defined as an imbalance between pro and antioxidant molecular species in favor of the former, has recently been recognized as a potential mechanism in the peripheral muscle dysfunction associated with COPD. a series of studies are proposed to better understand the role and source of oxidative stress in the skeletal muscle of patients with COPD. Specifically, three main aims will address the following questions regarding COPD, skeletal muscle, and oxidative stress: where is oxidative stress most prevalent, why does oxidative stress occur, and what are the consequences of oxidative stress in COPD? the overall hypothesis to be tested is that COPD results in a shift toward greater intramuscular oxidative stress and this is, at least in part, responsible for the diminished mechanical efficiency and greater peripheral muscle fatiguability during muscular work often associated with this disease. The vascular consequence of this augmented free radical load is altered vascular function and a disruption of the local matching of perfusion and metabolism in skeletal muscle during exercise. These crucial changes result in a cascade of factors such as local hypoxia and elevated vascular shear stress, entering a vicious cycle that leads to the generation of more free radicals, especially during physical work. It is proposed that this imbalance between pro and antioxidant potential, toward oxidative stress, plays a significant role in the attenuated exercise capacity and reduced muscle fatigue resistance associated with COPD.
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| Label | Type | Description | Intervention Names |
|---|---|---|---|
| Healthy volunteers | Experimental | Healthy volunteers will undergo one or more exercise interventions: knee-extensor exercise test; exercise test with restricting/releasing blood flow; exercise test with variable oxygen concentration and MRI; or exercise test with oral antioxidant or placebo cocktail. |
|
| COPD patients | Experimental | Patients with Chronic Obstructive Pulmonary Disease (COPD) will undergo one or more exercise interventions: knee-extensor exercise test; exercise test with restricting/releasing blood flow; exercise test with variable oxygen concentration and MRI; or exercise test with oral antioxidant or placebo cocktail. |
|
| Name | Type | Description | Arm Group Labels | Other Names |
|---|---|---|---|---|
| Knee-extensor exercise test | Other | Steady-state, single leg knee-extensor exercise at 20 Watts for 10 minutes |
|
| Measure | Description | Time Frame |
|---|---|---|
| Change in Free Radical Concentration in Muscle Tissue Following Exercise | Baseline to two hours |
| Measure | Description | Time Frame |
|---|---|---|
| Change in Free Radical Concentration in Muscle Venous Outflow following Exercise | Baseline to two hours |
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Inclusion Criteria:
Exclusion Criteria:
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| Name | Affiliation | Role |
|---|---|---|
| Russell Richardson, Ph.D. | US Department of Veterans Affairs | Principal Investigator |
| Facility | Status | City | State | ZIP | Country | Contacts |
|---|---|---|---|---|---|---|
| Veterans Affairs Salt Lake City Heath Care System | Salt Lake City | Utah | 84148 | United States |
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| Exercise test with restricting/releasing blood flow | Other | 10 minute submaximal (20 Watts) single leg knee-extensor exercise with blood flow clamped 10-15% lower by arterial infustion of phenylephrine; 10 minute passive single leg knee-extensor exercise with blood flow matched to the 20 Watt work rate level by arterial adenosine infusion; 10 minute seated rest with blood flow matched to the 20 Watt work rate level by adenosine infusion. Each test separated by at least 30 minutes rest. |
|
| Exercise test with variable oxygen concentration and MRI | Other | Two bouts of single leg knee-extensor exercise to maximal effort breathing regular air (21% oxygen) or 100% oxygen through a mouthpiece, with a 90 minute rest period between each bout. The same experiment performed again on a separate day in an magnetic resonance imaging (MRI) machine |
|
| Exercise test with oral antioxidant or placebo cocktail | Other | Antioxidants (Vitamin E - 400 international units, Vitamin C - 1000 milligrams and Alpha lipoic acid - 600 milligrams) or matching placebo capsules administered orally followed by femoral nerve stimulation and single leg knee-extensor exercise for 30 minutes at 50% maximum effort |
|
| ID | Term |
|---|---|
| D029424 | Pulmonary Disease, Chronic Obstructive |
| ID | Term |
|---|---|
| D008173 | Lung Diseases, Obstructive |
| D008171 | Lung Diseases |
| D012140 | Respiratory Tract Diseases |
| D002908 | Chronic Disease |
| D020969 | Disease Attributes |
| D010335 | Pathologic Processes |
| D013568 | Pathological Conditions, Signs and Symptoms |
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| ID | Term |
|---|---|
| D005080 | Exercise Test |
| D009682 | Magnetic Resonance Spectroscopy |
| D000975 | Antioxidants |
| ID | Term |
|---|---|
| D006334 | Heart Function Tests |
| D003935 | Diagnostic Techniques, Cardiovascular |
| D019937 | Diagnostic Techniques and Procedures |
| D003933 | Diagnosis |
| D012129 | Respiratory Function Tests |
| D003948 | Diagnostic Techniques, Respiratory System |
| D016552 | Ergometry |
| D008919 | Investigative Techniques |
| D013057 | Spectrum Analysis |
| D002623 | Chemistry Techniques, Analytical |
| D001685 | Biological Factors |
| D045504 | Molecular Mechanisms of Pharmacological Action |
| D020228 | Pharmacologic Actions |
| D020164 | Chemical Actions and Uses |
| D020011 | Protective Agents |
| D045505 | Physiological Effects of Drugs |
| D020313 | Specialty Uses of Chemicals |
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