Effect of Inhaled Carbon Ultrafine Particles on Reactive Hyperemia in Healthy Human Subjects
Open Access
- 1 March 2008
- journal article
- Published by Environmental Health Perspectives in Environmental Health Perspectives
- Vol. 116 (3) , 375-380
- https://doi.org/10.1289/ehp.10323
Abstract
BACKGROUND: Ultrafine particles (UFP) may contribute to the cardiovascular effects of exposure to particulate air pollution, partly because of their relatively efficient alveolar deposition and potential to enter the pulmonary vascular space. OBJECTIVES: This study tested the hypothesis that inhalation of elemental carbon UFP alters systemic vascular function. METHODS: Sixteen healthy subjects (mean age, 26.9 ± 6.5 years) inhaled air or 50 µg/m3 elemental carbon UFP by mouthpiece for 2 hr, while exercising intermittently. Measurements at preexposure baseline, 0 hr (immediately after exposure), 3.5 hr, 21 hr, and 45 hr included vital signs, venous occlusion plethysmography and reactive hyperemia of the forearm, and venous plasma nitrate and nitrite levels. RESULTS: Peak forearm blood flow after ischemia increased 3.5 hr after exposure to air but not UFP (change from preexposure baseline, air: 9.31 ± 3.41; UFP: 1.09 ± 2.55 mL/min/100 mL; t-test, p = 0.03). Blood pressure did not change, so minimal resistance after ischemia (mean blood pressure divided by forearm blood flow) decreased with air, but not UFP [change from preexposure baseline, air: –0.48 ± 0.21; UFP: 0.07 ± 0.19 mmHg/mL/min; analysis of variance (ANOVA), p = 0.024]. There was no UFP effect on pre-ischemia forearm blood flow or resistance, or on total forearm blood flow after ischemia. Venous nitrate levels were significantly lower after exposure to carbon UFP compared with air (ANOVA, p = 0.038). There were no differences in venous nitrite levels. CONCLUSIONS: Inhalation of 50 µg/m3 carbon UFP during intermittent exercise impairs peak forearm blood flow during reactive hyperemia in healthy human subjects. KEY WORDS: air pollution, nitric oxide, particulate matter, reactive hyperemia, vascular. Environ Health Perspect 116:375–380 (2008). doi:10.1289/ehp.10323 available viKeywords
This publication has 55 references indexed in Scilit:
- Ischemic and Thrombotic Effects of Dilute Diesel-Exhaust Inhalation in Men with Coronary Heart DiseaseNew England Journal of Medicine, 2007
- A Comparison of Studies on the Effects of Controlled Exposure to Fine, Coarse and Ultrafine Ambient Particulate Matter from a Single LocationInhalation Toxicology, 2007
- Clinical methods for the evaluation of endothelial function – a focus on resistance arteriesFundamental & Clinical Pharmacology, 2006
- Diabetes Enhances Vulnerability to Particulate Air Pollution–Associated Impairment in Vascular Reactivity and Endothelial FunctionCirculation, 2005
- Endothelial function of young healthy males following whole body resistance trainingJournal of Applied Physiology, 2005
- Relative Contributions of PM2.5Chemical Constituents to Acute Arterial Vasoconstriction in HumansInhalation Toxicology, 2004
- Motorcycle Exhaust Particulates Enhance Vasoconstriction in Organ Culture of Rat Aortas and Involve Reactive Oxygen SpeciesToxicological Sciences, 2003
- Size-Dependent Proinflammatory Effects of Ultrafine Polystyrene Particles: A Role for Surface Area and Oxidative Stress in the Enhanced Activity of UltrafinesToxicology and Applied Pharmacology, 2001
- Effects of Particulate and Gaseous Air Pollution on Cardiorespiratory HospitalizationsArchives of environmental health, 1999
- The rate-pressure product as an index of myocardial oxygen consumption during exercise in patients with angina pectoris.Circulation, 1978