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Ambient Fine Particulate Matter, Outdoor Temperature, and Risk of Metabolic Syndrome
Author(s) -
Rachel Wallwork,
Elena Colicino,
Jia Zhong,
Itai Kloog,
Brent A. Coull,
Pantel Vokonas,
Joel Schwartz,
Andrea Baccarelli
Publication year - 2016
Publication title -
american journal of epidemiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.33
H-Index - 256
eISSN - 1476-6256
pISSN - 0002-9262
DOI - 10.1093/aje/kww157
Subject(s) - metabolic syndrome , medicine , hypertriglyceridemia , hazard ratio , abdominal obesity , confidence interval , proportional hazards model , endocrinology , obesity , cholesterol , triglyceride
Ambient air pollution and temperature have been linked with cardiovascular morbidity and mortality. Metabolic syndrome and its components-abdominal obesity, elevated fasting blood glucose concentration, low high-density lipoprotein cholesterol concentration, hypertension, and hypertriglyceridemia-predict cardiovascular disease, but the environmental causes are understudied. In this study, we prospectively examined the long-term associations of air pollution, defined as particulate matter with an aerodynamic diameter less than or equal to 2.5 µm (PM 2.5 ), and temperature with the development of metabolic syndrome and its components. Using covariate-adjustment Cox proportional hazards models, we estimated associations of mean annual PM 2.5 concentration and temperature with risk of incident metabolic dysfunctions between 1993 and 2011 in 587 elderly (mean = 70 (standard deviation, 7) years of age) male participants in the Normative Aging Study. A 1-μg/m 3 increase in mean annual PM 2.5 concentration was associated with a higher risk of developing metabolic syndrome (hazard ratio (HR) = 1.27, 95% confidence interval (CI): 1.06, 1.52), an elevated fasting blood glucose level (HR = 1.20, 95% CI: 1.03, 1.39), and hypertriglyceridemia (HR = 1.14, 95% CI: 1.00, 1.30). Our findings for metabolic syndrome and high fasting blood glucose remained significant for PM 2.5 levels below the Environmental Protection Agency's health-safety limit (12 μg/m 3 ). A 1°C increase in mean annual temperature was associated with a higher risk of developing elevated fasting blood glucose (HR = 1.33, 95% CI: 1.14, 1.56). Men living in neighborhoods with worse air quality-with higher PM 2.5 levels and/or temperatures than average-showed increased risk of developing metabolic dysfunctions.

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