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Air pollution and metabolic syndrome risk: Evidence from nine observational studies
Zang, Si Tian1,2; Luan, Jie1,2; Li, Ling3; Wu, Qi Jun1,2; Chang, Qing1,2; Dai, Hui Xu1,2; Zhao, Yu Hong1
2021-11-01
Source PublicationEnvironmental Research
ISSN0013-9351
Volume202Pages:11546
Abstract

Background and aims: Globally, the number of metabolic syndrome (MetS) cases has increased substantially over time. However, the association between air pollution (AP) and MetS risk has been contradictory in observational studies. This is the first reported meta-analysis quantitatively exploring the aforementioned association. Methods: We searched PubMed, Embase, and Web of Science database entries up to September 14, 2020, and searches were updated up to December 6, 2020 to identify eligible articles on the AP-MetS risk association. No language restriction was imposed. Random-effects models were applied to estimate summary and subgroup effect sizes with 95% confidence intervals (CIs). PROSPERO registration number: CRD42020210431. Results: Eight articles (nine studies) were eligible for the meta-analysis. Increased MetS prevalence was not found to be associated with particulate matter less than 1 μm (PM), 2.5 μm (PM), and 10 μm (PM) in diameter or nitrogen dioxide (NO), and the summary effect sizes were 1.33 (95% CI: 0.95–1.85), 1.34 (95% CI: 0.96–1.89), 1.18 (95% CI: 0.98–1.19), and 1.28 (95% CI: 0.89–1.82), respectively, based on cross-sectional studies. The summary results indicated no association between each 10 μg/m increase in PM and MetS incidence (effect size 2.78 [95% CI: 0.70–11.02]), based on cohort studies. Subgroup analysis demonstrated that MetS incidence in older men increased dramatically by 992% with each 10 μg/m increase in PM. Conclusions: The evidence presented here suggests that although exposure to PM, PM, PM, or NO was not found to have a significant association with the occurrence of MetS, the statistical significance of the relationship between exposure to PM, PM, or PM and MetS prevalence was approximately borderline. More studies on AP-MetS risk association in low-/middle-income countries, as well as on the association between other air pollutants and MetS risk, are warranted. A sufficient number of high-quality studies is required to perform a meaningful meta-analysis of the relationship between air pollutants and MetS.

KeywordAir Pollution Epidemiology Meta-analysis Metabolic Syndrome Observational Study
DOI10.1016/j.envres.2021.111546
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaEnvironmental Sciences & Ecology ; Public, Environmental & Occupational Health
WOS SubjectEnvironmental Sciences & Ecology ; Public, Environmental & Occupational Health
WOS IDWOS:000704647900006
Scopus ID2-s2.0-85111032600
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Document TypeJournal article
CollectionCentre for Precision Medicine Research and Training
Corresponding AuthorZhao, Yu Hong
Affiliation1.Department of Clinical Epidemiology, Shengjing Hospital of China Medical University, Shenyang, No. 36 Sanhao Street, Heping District, 110004, China
2.Clinical Research Center, Shengjing Hospital of China Medical University, Shenyang, No. 39 Huaxiang Road, Tiexi District, 110022, China
3.Center for Precision Medicine Research and Training, University of Macau, Avenida da Universidade Taipa, Macau, 999078, China
Recommended Citation
GB/T 7714
Zang, Si Tian,Luan, Jie,Li, Ling,et al. Air pollution and metabolic syndrome risk: Evidence from nine observational studies[J]. Environmental Research, 2021, 202, 11546.
APA Zang, Si Tian., Luan, Jie., Li, Ling., Wu, Qi Jun., Chang, Qing., Dai, Hui Xu., & Zhao, Yu Hong (2021). Air pollution and metabolic syndrome risk: Evidence from nine observational studies. Environmental Research, 202, 11546.
MLA Zang, Si Tian,et al."Air pollution and metabolic syndrome risk: Evidence from nine observational studies".Environmental Research 202(2021):11546.
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