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Clinical Trials/NCT00115583
NCT00115583CompletedNot Applicable

The Contribution of Endothelin to Vasoreactivity in Atherosclerotic Coronary Arteries

Brigham and Women's Hospital2 sites in 1 country200 target enrollmentStarted: November 1, 1998Last updated:
Conditions
Drugs

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
200
Locations
2
Primary Endpoint
Change in minimum luminal diameter from baseline assessed by Quantitative Angiography

Study Overview

Brief Summary

The purpose of the study is to assess the importance of a substance called endothelin. Endothelin is produced by coronary arteries. This study examines this substance to determine whether it has an effect on controlling blood flow in coronary arteries. When these arteries release too much endothelin, the blood flow to the heart muscle is reduced and this may be important in heart conditions. This protocol examines an investigational drug called BQ-123 to see if it blocks the effect of endothelin. We assess the blood flow in the coronaries and evaluate the effects of BQ-123. It is anticipated that this endothelin blocker will open up coronary arteries and increase the blood flow to the heart.

Detailed Description

There are many substances that influence the diameter of the coronary artery and a number of these are actually released by the lining of the coronary arteries (referred to as the endothelium). Over the past 15 years, our laboratory has been instrumental in establishing the role of endothelium-released relaxing factors which relax (open) the coronary arteries. We are now focussing our attention on factors which constrict the coronary artery, in particular a substance called endothelin-1 (ET-1). This potent constrictor substance has been found to accumulate at coronary artery sites which may produce unstable angina (ie the culprit lesion or stenosis). Hence ET-1 may produce localized constriction of a coronary stenosis thereby further narrowing the remaining lumen and cutting off blood flow to the heart muscle and thus leading to unstable angina.

If ET-1 is important in the development of unstable angina, then medications which inhibit the effects of ET-1 should improve the condition. To achieve a blockade of ET-1, inhibitors of the two receptors (ET-A and ET-B) responsible for ET-1's action must be administered. Animal and human studies have demonstrated that a blockade of the ET-A receptor by the new antagonist, BQ-123, inhibits most of the ET-1 induced constrictor response. BQ-123 has been safely administered systemically by intravenous infusion and locally in the human forearm where it produces dilation of the forearm arteries. It has not been previously administered into human coronary arteries.

Consented patients whose routine diagnostic angiogram shows suitable anatomy (i.e., normal angiogram for the control group, or one/two vessel coronary artery disease with an identifiable culprit stenosis) will have placement of a coronary artery angiographic catheter. Placement of this catheter does not require an additional puncture of an artery (already performed in the routine diagnostic angiogram).

The angiographic catheter allows visualization of the internal diameter of the coronary arteries by the injection of a radiographic contrast with the image being recorded on a cine film. Specialized imaging machines will measure the diameter of the vessel.

Through the angiographic catheter, an infusion catheter (by which the drugs can be administered) and a coronary Doppler flow wire are placed in the coronary artery. The latter instrument is a well-established tool for measuring coronary blood flow.

Study Design

Study Type
Interventional
Allocation
Non Randomized
Intervention Model
Crossover
Masking
None

Eligibility Criteria

Ages
18 Years to 75 Years (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Adult men and women between the ages of 18 to 75 years will be enrolled and categorized into one of 4 groups. The categories are defined below:
  • Control patients characterized by chest pain and angiographically normal coronary arteries.
  • Chronic stable angina patients who describe a history of exertional chest pain which is unchanged in frequency over the preceding month, and who have at least a 70% stenosis in a coronary artery.
  • Unstable angina patients who describe chest pain at rest or with minimal exertion over the preceding 2 weeks, and who have an identifiable culprit stenosis in a coronary artery.
  • Cardiac transplant recipients who are undergoing routine annual surveillance cardiac catheterization.

Exclusion Criteria

  • Patients with the following will be excluded from the study:
  • Angiographic exclusion criteria: *Left main coronary artery disease or severe triple vessel disease; *Unstable angina without any identifiable culprit lesion.
  • Severe left ventricular dysfunction (ejection fraction < 40%) or clinical cardiac failure.
  • Nitroglycerin required in the preceding 4 hours prior to the investigation.
  • Severe renal, hepatic or hematologic abnormalities.
  • Inability to obtain written informed consent.

Outcomes

Primary Outcomes

Change in minimum luminal diameter from baseline assessed by Quantitative Angiography

Coronary Flow Reserve (max/basal CBFV) assessed by coronary Doppler Wire

Correlation between the change in culprit epicardial artery stenosis MLD and atherectomy specimen ET-1 content assessed by immunochemistry

Secondary Outcomes

No secondary outcomes reported

Investigators

Sponsor Class
Other

Study Sites (2)

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The Contribution of Endothelin to... | Clinical Trial