ABC | Volume 112, Nº4, April 2019

Short Editorial Pagan et al Mercury and cardiovascular alterations Arq Bras Cardiol. 2019; 112(4):381-382 1. Guzzi G, la Porta CA. Molecular mechanism triggered by mercury. Toxicology. 2008;244(1):1-12. 2. Genchi G, Sinicropi MS, Carocci A, Lauria G, Catalano A. Mercury exposure and heart diseases. Int J Environ Res Public Health. 2017;14(1):74. 3. Houston MC. The role of mercury and cadmium heavy metals in vascular disease, hypertension, coronary heart disease, and myocardial infarction. Altern Ther Health Med. 2007;13(2):S128–S133. 4. Guallar E, Sanz-Gallardo MI, van’t Veer P, Bode P, Aro A, Gómez-Aracena J, et al. Mercury, fish oils, and the risk of myocardial infarction. N Engl J Med. 2002;347(22):1747–54. 5. Valera B, Dewailly E, Poirier P. Environmental mercury exposure and blood pressure among Nunavik Inuit adults. Hypertension. 2009;54(5):981–6. 6. Wildemann TM, Siciliano SD, Weber LP. The mechanisms associated with the development of hypertension after exposure to lead, mercury species or their mixtures differs with themetal and themixture ratio. Toxicology. 2016 Jan 2;339:1-8. 7. Vassallo DV, Simões MR, Giuberti K, Azevedo BF, o Ribeiro Junior RF, Salaices M, et al. Efeitos da Exposição Crônica ao Mercúrio sobre a Atividade da Enzima Conversora de Angiotensina e Estresse Oxidativo em Ratos Normotensos e Hipertensos. Arq Bras Cardiol. 2019; 112(4):374-380. 8. Cezar MD, Damatto RL, Pagan LU, Lima AR, Martinez PF, Bonomo C, et al. Early spironolactone treatment attenuates heart failure development by improving myocardial function and reducing fibrosis in spontaneously hypertensive rats. Cell Physiol Biochem. 2015;36(4):1453-66. 9. Pagan LU, Damatto RL, Cezar MD, Lima AR, Bonomo C, Campos DH, et al. Long-term low intensity physical exercise attenuates heart failure development in aging spontaneously hypertensive rats. Cell Physiol Biochem. 2015;36(1):61-74. 10. Damatto RL, Martinez PF, Lima AR, Cezar MD, Campos DH, Oliveira Jr SA, etal.Heart failure-inducedskeletalmyopathy inspontaneouslyhypertensive rats. Int J Cardiol. 2013:167(3):698-703. 11. Martinez PF, Okoshi K, Zornoff LA, Oliveira SA Jr, Campos DH, Lima AR, et al. Echocardiographic detection of congestive heart failure in postinfarction rats. J Appl Physiol. 2011;111(2):543-51. 12. Asgary S, Movahedian A, Keshvari M, Taleghani M, Sahebkar A, Sarrafzadegan N. Serum levels of lead, mercury and cadmium in relation to coronary artery disease in the elderly: a cross-sectional study. Chemosphere. 2017 Aug;180:540-4. References This is an open-access article distributed under the terms of the Creative Commons Attribution License 382

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