Insights Into the Mechanisms and Mediators of the Effects of Air Pollution Exposure on Blood Pressure and Vascular Function in Healthy Humans
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- 1 September 2009
- journal article
- research article
- Published by Wolters Kluwer Health in Hypertension
- Vol. 54 (3), 659-667
- https://doi.org/10.1161/hypertensionaha.109.130237
Abstract
Fine particulate matter air pollution plus ozone impairs vascular function and raises diastolic blood pressure. We aimed to determine the mechanism and air pollutant responsible. The effects of pollution on heart rate variability, blood pressure, biomarkers, and brachial flow-mediated dilatation were determined in 2 randomized, double-blind, crossover studies. In Ann Arbor, 50 subjects were exposed to fine particles (150 μg/m3) plus ozone (120 parts per billion) for 2 hours on 3 occasions with pretreatments of an endothelin antagonist (Bosentan, 250 mg), antioxidant (Vitamin C, 2 g), or placebo. In Toronto, 31 subjects were exposed to 4 different conditions (particles plus ozone, particles, ozone, and filtered air). In Toronto, diastolic blood pressure significantly increased (2.9 and 3.6 mm Hg) only during particle-containing exposures in association with particulate matter concentration and reductions in heart rate variability. Flow-mediated dilatation significantly decreased (2.0% and 2.9%) only 24 hours after particle-containing exposures in association with particulate matter concentration and increases in blood tumor necrosis factor α. In Ann Arbor, diastolic blood pressure significantly similarly increased during all of the exposures (2.5 to 4.0 mm Hg), a response not mitigated by pretreatments. Flow-mediated dilatation remained unaltered. Particulate matter, not ozone, was responsible for increasing diastolic blood pressure during air pollution inhalation, most plausibly by instigating acute autonomic imbalance. Only particles from urban Toronto additionally impaired endothelial function, likely via slower proinflammatory pathways. Our findings demonstrate credible mechanisms whereby fine particulate matter could trigger acute cardiovascular events and that aspects of exposure location may be an important determinant of the health consequences.Keywords
This publication has 37 references indexed in Scilit:
- Mechanisms of Inhaled Fine Particulate Air Pollution–Induced Arterial Blood Pressure ChangesEnvironmental Health Perspectives, 2009
- Endothelial Dysfunction: Associations with Exposure to Ambient Fine Particles in Diabetic IndividualsEnvironmental Health Perspectives, 2008
- Air Pollution Exposure Potentiates Hypertension Through Reactive Oxygen Species-Mediated Activation of Rho/ROCKArteriosclerosis, Thrombosis, and Vascular Biology, 2008
- Diesel Exhaust Inhalation Elicits Acute Vasoconstriction in VivoEnvironmental Health Perspectives, 2008
- Exposure to Concentrated Ambient Particles Does Not Affect Vascular Function in Patients with Coronary Heart DiseaseEnvironmental Health Perspectives, 2008
- Associations between Recent Exposure to Ambient Fine Particulate Matter and Blood Pressure in the Multi-Ethnic Study of Atherosclerosis (MESA)Environmental Health Perspectives, 2008
- Particulate Air Pollution, Oxidative Stress Genes, and Heart Rate Variability in an Elderly CohortEnvironmental Health Perspectives, 2007
- Potential Confounding of Particulate Matter on the Short-Term Association between Ozone and Mortality in Multisite Time-Series StudiesEnvironmental Health Perspectives, 2007
- Mortality Risk Associated with Short-Term Exposure to Traffic Particles and SulfatesEnvironmental Health Perspectives, 2007
- Airway reflexes, autonomic function, and cardiovascular responses.Environmental Health Perspectives, 2001