期刊文献+

Air pollution and heart failure: Relationship with the ejection fraction

Air pollution and heart failure: Relationship with the ejection fraction
下载PDF
导出
摘要 AIM: To study whether the concentrations of particulate matter in ambient air are associated with hospitaladmission due to heart failure in patients with heart failure with preserved ejection fraction and reduced ejection fraction. METHODS: We studied 353 consecutive patients admitted into a tertiary care hospital with a diagnosis of heart failure. Patients with ejection fraction of ≥ 45% were classified as having heart failure with preserved ejection fraction and those with an ejection fraction of < 45% were classified as having heart failure with reduced ejection fraction. We determined the average concentrations of different sizes of particulate matter (< 10, < 2.5, and < 1 μm) and the concentrations of gaseous pollutants (carbon monoxide, sulphur dioxide, nitrogen dioxide and ozone) from 1 d up to 7 d prior to admission. RESULTS: The heart failure with preserved ejection fraction population was exposed to higher nitrogen dioxide concentrations compared to the heart failure with reduced ejection fraction population (12.95 ± 8.22 μg/m 3 vs 4.50 ± 2.34 μg/m 3 , P < 0.0001). Multivariate analysis showed that nitrogen dioxide was a significant predictor of heart failure with preserved ejection fraction (odds ratio ranging from (1.403, 95%CI: 1.003-2.007, P = 0.04) to (1.669, 95%CI: 1.043-2.671, P = 0.03). CONCLUSION: This study demonstrates that shortterm nitrogen dioxide exposure is independently associated with admission in the heart failure with preserved ejection fraction population. AIM: To study whether the concentrations of particulate matter in ambient air are associated with hospitaladmission due to heart failure in patients with heart failure with preserved ejection fraction and reduced ejection fraction. METHODS: We studied 353 consecutive patients admitted into a tertiary care hospital with a diagnosis of heart failure. Patients with ejection fraction of ≥ 45% were classified as having heart failure with preserved ejection fraction and those with an ejection fraction of &lt; 45% were classified as having heart failure with reduced ejection fraction. We determined the average concentrations of different sizes of particulate matter (&lt; 10, &lt; 2.5, and &lt; 1 μm) and the concentrations of gaseous pollutants (carbon monoxide, sulphur dioxide, nitrogen dioxide and ozone) from 1 d up to 7 d prior to admission. RESULTS: The heart failure with preserved ejection fraction population was exposed to higher nitrogen dioxide concentrations compared to the heart failure with reduced ejection fraction population (12.95 ± 8.22 μg/m 3 vs 4.50 ± 2.34 μg/m 3 , P &lt; 0.0001). Multivariate analysis showed that nitrogen dioxide was a significant predictor of heart failure with preserved ejection fraction (odds ratio ranging from (1.403, 95%CI: 1.003-2.007, P = 0.04) to (1.669, 95%CI: 1.043-2.671, P = 0.03). CONCLUSION: This study demonstrates that shortterm nitrogen dioxide exposure is independently associated with admission in the heart failure with preserved ejection fraction population.
出处 《World Journal of Cardiology》 CAS 2013年第3期49-53,共5页 世界心脏病学杂志(英文版)(电子版)
基金 Supported by The framework of one research projects funded by the Spanish Society of Cardiology (Daiichi-Sankyo project 2011)
关键词 Air pollution HEART failure PRESERVED EJECTION FRACTION Reduced EJECTION FRACTION Nitrogen dioxide Air pollution Heart failure Preserved ejection fraction Reduced ejection fraction Nitrogen dioxide
  • 相关文献

参考文献30

  • 1Alberto J Alves,Nir Eynon,José Oliveira,Ehud Goldhammer.RAAS and adrenergic genes in heart failure: Function, predisposition and survival implications[J].World Journal of Cardiology,2010,2(7):187-197. 被引量:3
  • 2Xing Sheng Yang , Jing Ping Sun.Advances in diastolic heart failure[J].World Journal of Cardiology,2010,2(3):58-63. 被引量:1
  • 3Morris,RD,Naumova,EN.Carbon monoxide and hospital admissions for congestive heart failure: evidence of an increased effect at low temperatures. Environmental Health Perspectives . 1998
  • 4WELLENIUS G A,BATESONT F,MITTLEMANM A,et al.Particulate air pollution and the rate of hospitalization for congestive heart failure among medicare beneficiaries in Pitts-burgh pennsylvania. American Journal of Epidemiology . 2005
  • 5Stieb DM,Judek S,Burnett RT.Meta-analysis of time-series studies of air pollution and mortality:update in relation to the use of generalized additive models.. Journal of the Air and Waste Management Association . 2003
  • 6Stieb D M,Judek S,Burnett R T.Meta-analysis of time-series studies of air pollution and mortality: effects of gases and particles and the influence of cause of death, age, and season. Journal of the Air and Waste Management Association . 2002
  • 7TM Chen,S Shofer,J Gokhale,WG Kuschner.Outdoor air pollution: overview and historical perspective. The American Journal of The Medical Sciences . 2007
  • 8Peel JL,Metzger KB,Klein M,et al.Ambient air pollution and car-diovascular emergency department visits in potentially sensitive groups. American Journal of Epidemiology . 2007
  • 9Kan G,Visser CA,Lie KI,et al.Early two-dimensional echo- cardiographic masurement of left ventricular ejection fraction in acute myocardial infarction. European Heart Journal . 1984
  • 10Pope CA 3rd,Burnett RT,Thurston GD,et al.Cardiovascular mortality and long-term exposure to particulate air pollution: epidemiological evidence of general pathophysiological pathways of disease. Circulation . 2004

二级参考文献131

  • 1Yusuf S;Pfeffer MA;Swedberg K.Effects of candesartan in patients with chronic heart failure and preserved left-ventricular ejection fraction: the CHARM-Preserved trial,2003(9386).
  • 2de Gasparo M,Catt KJ,Inagami T,et al.International Union of Pharmacology, XXIII, The Angiotensin II Receptors. Pharmacological Research . 2000
  • 3Burgess MI,,Jenkins C,Sharman JE,Marwick TH.Diastolic stress echocardiography: hemodynamic validation and clinical significance of estimation of ventricular filling pressure with exercise. Journal of the American College of Cardiology . 2006
  • 4Massie BM,Carson PE,McMurray JJ,Komajda M,McKelvie R,Zile MR,Anderson S,Donovan M,Iverson E,Staiger C,Ptaszynska A.Irbesartan in patients with heart failure and preserved ejection fraction. The New England Journal of Medicine . 2008
  • 5Owan TE,Hodge DO,Herges RM,Jacobsen SJ,Roger VL,Redfield MM.Trends in prevalence and outcome of heart failure with preserved ejection fraction. The New England Journal of Medicine . 2006
  • 6Lloyd-Jones D,Adams R,Carnethon M,De Simone G,Ferguson TB,Flegal K,Ford E,Furie K,Go A,Greenlund K,Haase N,Hailpern S,Ho M,Howard V,Kissela B,Kittner S,Lackland D,Lisabeth L,Marelli A,McDermott M,Meigs J,Mozaffarian D,Nichol G,O‘‘Donnell C,Roger V,Rosam.Heart disease and stroke statistics--2009 update: a report from the American Heart Association Statistics Committee and Stroke Statistics Subcommittee. Circulation . 2009
  • 7Aurigemma GP,Gottdiener JS,Shemanski L,Gardin J,Kitzman D.Predictive value of systolic and diastolic function for incident congestive heart failure in the elderly: the cardiovascular health study. Journal of the American College of Cardiology . 2001
  • 8Cleland JG,Tendera M,Adamus J,Freemantle N,Polonski L,Taylor J.The perindopril in elderly people with chronic heart failure (PEP-CHF) study. European Heart Journal . 2006
  • 9Lorell BH.Cardiac rennin-angiotensin system in cardiac hypertrophy and failure. Diastolic relaxation of the heart: the biology of diastole in health and disease . 1994
  • 10Devereux RB,Dahlf B,Gerdts E,Boman K,Nieminen MS,Papademetriou V,Rokkedal J,Harris KE,Edelman JM,Wachtell K.Regression of hypertensive left ventricular hypertrophy by losartan compared with atenolol: the Losartan Intervention for Endpoint Reduction in Hypertension (LIFE) trial. Circulation . 2004

共引文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部