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Clinical Trial Details — Status: Completed

Administrative data

NCT number NCT00737958
Other study ID # BHF FS/07/048
Secondary ID
Status Completed
Phase N/A
First received August 19, 2008
Last updated March 30, 2010
Start date August 2008
Est. completion date December 2008

Study information

Verified date July 2008
Source University of Edinburgh
Contact n/a
Is FDA regulated No
Health authority United Kingdom: Research Ethics Committee
Study type Observational

Clinical Trial Summary

The purpose of this study is to determine whether exposure to diesel exhaust (air pollution) has a functional impact on patients with stable angina pectoris.


Description:

Air pollution is a major cause of cardiovascular morbidity and mortality. The mechanism and components of air pollution responsible for these cardiovascular effects are unknown but small combustion-derived particles are suspected to be the major cause. Using a unique exposure system in Umeå Sweden, we have demonstrated that healthy volunteers who inhale dilute diesel exhaust develop an impairment of two important, highly relevant and complementary aspects of vascular function: the regulation of vascular tone and endogenous fibrinolysis. We have recently extended these findings and have shown that brief exposure to dilute diesel exhaust promotes myocardial ischemia and inhibits endogenous fibrinolytic capacity in patients with stable asymptomatic coronary heart disease. We now wish to extend these findings to patients with chronic stable angina pectoris. In particular, we wish to determine the functional impact of diesel exhaust inhalation as well as describe the time course and minimum exposure that can induce these detrimental effects.


Recruitment information / eligibility

Status Completed
Enrollment 19
Est. completion date December 2008
Est. primary completion date December 2008
Accepts healthy volunteers No
Gender Both
Age group N/A and older
Eligibility Inclusion Criteria:

- Documented coronary heart disease

- Symptoms of stable angina pectoris

Exclusion Criteria:

- History of arrhythmia

- Severe 3 vessel coronary artery disease or left main stem stenosis that has not been revascularised

- Resting conduction abnormality

- Digoxin therapy

- Uncontrolled hypertension

- Renal or hepatic failure

- Patients with unstable disease (ACS or unstable symptoms within 3 months)

- Asthma

- Intercurrent illness

Study Design

Observational Model: Case-Crossover, Time Perspective: Prospective


Locations

Country Name City State
United Kingdom University of Edinburgh Edinburgh Midlothian

Sponsors (1)

Lead Sponsor Collaborator
University of Edinburgh

Country where clinical trial is conducted

United Kingdom, 

References & Publications (5)

Lanki T, Hoek G, Timonen KL, Peters A, Tiittanen P, Vanninen E, Pekkanen J. Hourly variation in fine particle exposure is associated with transiently increased risk of ST segment depression. Occup Environ Med. 2008 Nov;65(11):782-6. doi: 10.1136/oem.2007.037531. Epub 2008 Jun 4. — View Citation

Mills NL, Törnqvist H, Gonzalez MC, Vink E, Robinson SD, Söderberg S, Boon NA, Donaldson K, Sandström T, Blomberg A, Newby DE. Ischemic and thrombotic effects of dilute diesel-exhaust inhalation in men with coronary heart disease. N Engl J Med. 2007 Sep 13;357(11):1075-82. — View Citation

Mills NL, Törnqvist H, Robinson SD, Gonzalez M, Darnley K, MacNee W, Boon NA, Donaldson K, Blomberg A, Sandstrom T, Newby DE. Diesel exhaust inhalation causes vascular dysfunction and impaired endogenous fibrinolysis. Circulation. 2005 Dec 20;112(25):3930-6. — View Citation

Pekkanen J, Peters A, Hoek G, Tiittanen P, Brunekreef B, de Hartog J, Heinrich J, Ibald-Mulli A, Kreyling WG, Lanki T, Timonen KL, Vanninen E. Particulate air pollution and risk of ST-segment depression during repeated submaximal exercise tests among subjects with coronary heart disease: the Exposure and Risk Assessment for Fine and Ultrafine Particles in Ambient Air (ULTRA) study. Circulation. 2002 Aug 20;106(8):933-8. — View Citation

Törnqvist H, Mills NL, Gonzalez M, Miller MR, Robinson SD, Megson IL, Macnee W, Donaldson K, Söderberg S, Newby DE, Sandström T, Blomberg A. Persistent endothelial dysfunction in humans after diesel exhaust inhalation. Am J Respir Crit Care Med. 2007 Aug 15;176(4):395-400. Epub 2007 Apr 19. — View Citation

Outcome

Type Measure Description Time frame Safety issue
Primary Myocardial ischaemia - measured as time to 1mm ST segment depression on the ECG during standard BRUCE exercise stress testing. Immediately after exposure No
Secondary Total ischaemic burden - assessed using 24 hour Holter ambulatory ECG monitoring 24hrs after exposure No
Secondary Total exercise capacity - assessed by maximal work done during exercise stress test Immediately after exposure No
Secondary Biochemical evidence of myocardial ischaemia - plasma highly sensitive troponins, ischaemically modified albumin, fatty acid binding protein Before, after and at 24 hours after exposure No
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