Cite

Buttar HS, Li T, Ravi N. Prevention of cardiovascular diseases: Role of exercise, dietary interventions, obesity and smoking cessation. Exp Clin Cardiol. 2005; 10(4):229–49.19641674ButtarHSLiTRaviNPrevention of cardiovascular diseases: Role of exercise, dietary interventions, obesity and smoking cessationExp Clin Cardiol200510422949Search in Google Scholar

Gupta R, Guptha S. Strategies for initial management of hypertension. Indian J Med Res. 2010; 132:531–42. Review.21150005GuptaRGupthaSStrategies for initial management of hypertensionIndian J Med Res201013253142ReviewSearch in Google Scholar

Cai, H. and Harrison, D.G., Endothelial dysfunction in cardiovascular diseases: the role of oxidant stress. Circ Res. 2000; 87(10): 840–844.1107387810.1161/01.RES.87.10.840CaiH.HarrisonD.G.Endothelial dysfunction in cardiovascular diseases: the role of oxidant stressCirc Res2000871084084411073878Search in Google Scholar

Montezano AC, Dulak-Lis M, Tsiropoulou S, Harvey A, Briones AM, Touyz RM. Oxidative stress human hypertension: vascular mechanisms, biomarkers, and novel therapies. Can J Cardiol. 2015; 31(5):631–41.2593648910.1016/j.cjca.2015.02.008MontezanoACDulak-LisMTsiropoulouSHarveyABrionesAMTouyzRMOxidative stress human hypertension: vascular mechanisms, biomarkers, and novel therapiesCan J Cardiol20153156314125936489Search in Google Scholar

Birben E, Sahiner UM, Sackesen C, Erzurum S, Kalayci O. Oxidative stress and antioxidant defense. World Allergy Organ J. 2012;5(1):9–19.2326846510.1097/WOX.0b013e3182439613BirbenESahinerUMSackesenCErzurumSKalayciOOxidative stress and antioxidant defenseWorld Allergy Organ J201251919348892323268465Search in Google Scholar

Vina J, Sanchis-Gomar F, Martinez-Bello V, Gomez-Cabrera MC. Exercise acts as a drug; the pharmacological benefits of exercise. Br J Pharmacol. 2012;167(1):1-12.2248639310.1111/j.1476-5381.2012.01970.xVinaJSanchis-GomarFMartinez-BelloVGomez-CabreraMCExercise acts as a drug; the pharmacological benefits of exerciseBr J Pharmacol20121671112344890822486393Search in Google Scholar

Higashi Y, Sasaki S, Sasaki N, Nakagawa K, Ueda T, Yoshimizu A, Kurisu S, Matsuura H, Kajiyama G, Oshima T. Daily aerobic exercise improves reactive hyperemia in patients with essential hypertension. Hypertension. 1999; 33:591–7.993117110.1161/01.HYP.33.1.591HigashiYSasakiSSasakiNNakagawaKUedaTYoshimizuAKurisuSMatsuuraHKajiyamaGOshimaTDaily aerobic exercise improves reactive hyperemia in patients with essential hypertensionHypertension19993359179931171Search in Google Scholar

Endlich PW, Firmes LB, Gonçalves WL, Gouvea SA, Moysés MR, Bissoli NS, Reis AM, Abreu GR. Involvement of the atrial natriuretic peptide in the reduction of arterial pressure induced by swimming but not by running training in hypertensive rats. Peptides. 2011; 32(8):1706–12.2176273910.1016/j.peptides.2011.06.027EndlichPWFirmesLBGonçalvesWLGouveaSAMoysésMRBissoliNSReisAMAbreuGRInvolvement of the atrial natriuretic peptide in the reduction of arterial pressure induced by swimming but not by running training in hypertensive ratsPeptides201132817061221762739Search in Google Scholar

Song YJ, Sawamura M, Ikeda K, Igawa S, Nara Y, Yamori Y. Training in swimming reduces blood pressure and increases muscle glucose transport activity as well as GLUT4 contents in stroke-prone spontaneously hypertensive rats. Appl Human Sci.1998; 17(6):275–80.1005222610.2114/jpa.17.275SongYJSawamuraMIkedaKIgawaSNaraYYamoriYTraining in swimming reduces blood pressure and increases muscle glucose transport activity as well as GLUT4 contents in stroke-prone spontaneously hypertensive ratsAppl Human Sci19981762758010052226Search in Google Scholar

Coimbra R, Sanchez LS, Potenza JM, Rossoni LV, Amaral SL, Michelini LC. Is gender crucial for cardiovascular adjustments induced by exercise training in female spontaneously hypertensive rats? Hypertension. 2008; 52(3):514–21.10.1161/HYPERTENSIONAHA.108.11474418695147CoimbraRSanchezLSPotenzaJMRossoniLVAmaralSLMicheliniLCIs gender crucial for cardiovascular adjustments induced by exercise training in female spontaneously hypertensive rats?Hypertension20085235142118695147Open DOISearch in Google Scholar

Kohno H, Furukawa S, Naito H, Minamitani K, Ohmori D, Yamakura F. Contribution of nitric oxide, angiotensin II and superoxide dismutase to exercise-induced attenuation of blood pressure elevation in spontaneously hypertensive rats. Jpn Heart J. 2002; 43(1):25–34.1204188610.1536/jhj.43.25KohnoHFurukawaSNaitoHMinamitaniKOhmoriDYamakuraFContribution of nitric oxide, angiotensin II and superoxide dismutase to exercise-induced attenuation of blood pressure elevation in spontaneously hypertensive ratsJpn Heart J2002431253412041886Search in Google Scholar

Kimura H, Kon N, Furukawa S, Mukaida M, Yamakura F, Matsumoto K, Sone H, Murakami-Murofushi K. Effect of endurance exercise training on oxidative stress in spontaneously hypertensive rats (SHR) after emergence of hypertension. Clin Exp Hypertens. 2010; 32(7):407–15.2082822210.3109/10641961003667930KimuraHKonNFurukawaSMukaidaMYamakuraFMatsumotoKSoneHMurakami-MurofushiKEffect of endurance exercise training on oxidative stress in spontaneously hypertensive rats (SHR) after emergence of hypertensionClin Exp Hypertens20103274071520828222Search in Google Scholar

Ruzicic R. D., Jakovljevic V., Djordjevic D. Oxidative Stress in Training, Overtraining and Detraining: from Experimental to Applied Research. Ser J Exp Clin Res. 2016; 17(4): 343–348.10.1515/sjecr-2016-0002RuzicicR. D.JakovljevicV.DjordjevicD.Oxidative Stress in Training, Overtraining and Detraining: from Experimental to Applied ResearchSer J Exp Clin Res2016174343348Open DOISearch in Google Scholar

Ohkawa H, Ohishi N, Yagi K. Assay for lipid peroxides in animal tissues by thiobarbituric acid reaction. Anal Biochem 1979; 95(2):351–8.10.1016/0003-2697(79)90738-336810OhkawaHOhishiNYagiKAssay for lipid peroxides in animal tissues by thiobarbituric acid reactionAnal Biochem19799523518Open DOISearch in Google Scholar

Green LC, Wagner DA, Glogowski J, Skipper PL, Wishnok JS, Tannenbaum SR. Analysis of nitrate, nitrite, and [15N]nitrate in biological fluids. Anal Biochem 1982; 126(1):131–8.718110510.1016/0003-2697(82)90118-XGreenLCWagnerDAGlogowskiJSkipperPLWishnokJSTannenbaumSRAnalysis of nitrate, nitrite, and [15N]nitrate in biological fluidsAnal Biochem198212611318Search in Google Scholar

Pick E, Keisari Y. A simple colorimetric method for the measurement of hydrogen peroxide produced by cells in culture. J Immunol Methods 1980; 38(1–2):161–70.10.1016/0022-1759(80)90340-36778929PickEKeisariYA simple colorimetric method for the measurement of hydrogen peroxide produced by cells in cultureJ Immunol Methods1980381–216170Open DOISearch in Google Scholar

Auclair C, Voisin E. Nitroblue tetrazolium reduction. In: Greenvvald RA, ed. Handbook of Methods for Oxygen Radical Research. Boca Raton: CRC Press, 1985:123–32.AuclairCVoisinENitroblue tetrazolium reductionInGreenvvaldRAedHandbook of Methods for Oxygen Radical ResearchBoca RatonCRC Press198512332Search in Google Scholar

Dillard CJ, Litov RE, Savin WM, Dumelin EE, Tappel AL. Effects of exercise, vitamin E, and ozone on pulmonary function and lipid peroxidation. J Appl Physiol Respir Environ Exerc Physiol. 1978; 45(6):927–32.730598DillardCJLitovRESavinWMDumelinEETappelALEffects of exercise, vitamin E, and ozone on pulmonary function and lipid peroxidationJ Appl Physiol Respir Environ Exerc Physiol19784569273210.1152/jappl.1978.45.6.927730598Search in Google Scholar

Stanković M., Radovanović, D. Oxidative stress and physical activity. Sport Logia. 2012; 8:1–11.StankovićMRadovanovićDOxidative stress and physical activitySport Logia2012811110.5550/sgia.120801.en.001SSearch in Google Scholar

Roque FR, Briones AM, García-Redondo AB, Galán M, Martínez-Revelles S, Avendaño MS, Cachofeiro V, Fernandes T, Vassallo DV, Oliveira EM, Salaices M. Aerobic exercise reduces oxidative stress and improves vascular changes of small mesenteric and coronary arteries in hypertension. Br J Pharmacol. 2013; 168(3):686–703.10.1111/j.1476-5381.2012.02224.x22994554RoqueFRBrionesAMGarcía-RedondoABGalánMMartínez-RevellesSAvendañoMSCachofeiroVFernandesTVassalloDVOliveiraEMSalaicesMAerobic exercise reduces oxidative stress and improves vascular changes of small mesenteric and coronary arteries in hypertensionBr J Pharmacol20131683686703357928822994554Open DOISearch in Google Scholar

Powers SK, Radak Z, Ji LL. Exercise-induced oxidative stress: past, present and future. J Physiol. 2016; 594(18):5081–92.10.1113/JP27064626893258PowersSKRadakZJiLLExercise-induced oxidative stress: past, present and futureJ Physiol201659418508192502369926893258Open DOISearch in Google Scholar

Araujo LC, de Souza IL, Vasconcelos LH, Brito Ade F, Queiroga FR, Silva AS, da Silva PM, Cavalcante Fde A, da Silva BA. Chronic aerobic swimming exercise promotes functional and morphological changes in rat ileum. Biosci Rep. 2015; 35(5).26424698AraujoLCde SouzaILVasconcelosLHBrito AdeFQueirogaFRSilvaASda SilvaPMCavalcante FdeAda SilvaBAChronic aerobic swimming exercise promotes functional and morphological changes in rat ileumBiosci Rep201535510.1042/BSR20150001461369026424698Search in Google Scholar

Balcı SS, Pepe H. Effects of gender, endurance training and acute exhaustive exercise on oxidative stress in the heart and skeletal muscle of the rat. Chin J Physiol. 2012; 55(4):236–44.23282164BalcıSSPepeHEffects of gender, endurance training and acute exhaustive exercise on oxidative stress in the heart and skeletal muscle of the ratChin J Physiol201255423644Search in Google Scholar

Tanaka H, Bassett DR Jr, Howley ET, Thompson DL, Ashraf M, Rawson FL. Swimming training lowers the resting blood pressure in individuals with hypertension. J Hypertens. 1997; 15(6):651–7.921818510.1097/00004872-199715060-00012TanakaHBassettDRJrHowleyETThompsonDLAshrafMRawsonFLSwimming training lowers the resting blood pressure in individuals with hypertensionJ Hypertens199715665179218185Search in Google Scholar

Husain K. Exercise conditioning attenuates the hyper-tensive effects of nitric oxide synthase inhibitor in rat. Mol Cell Biochem. 2002; 231(1–2):129–37.10.1023/A:1014416915643HusainKExercise conditioning attenuates the hyper-tensive effects of nitric oxide synthase inhibitor in ratMol Cell Biochem20022311–212937Open DOISearch in Google Scholar

Kuru O, Sentürk UK, Koçer G. Effect of exercise training on resistance arteries in rats with chronic NOS inhibition. J Appl Physiol 2009; 107: 896–902.10.1152/japplphysiol.91180.200819498093KuruOSentürkUKKoçerGEffect of exercise training on resistance arteries in rats with chronic NOS inhibitionJ Appl Physiol2009107896902Open DOISearch in Google Scholar

Fregly MJ. Effect of an exercise regimen on development of hypertension in rats. J Appl Physiol 1984; 56:381–387.10.1152/jappl.1984.56.2.381FreglyMJEffect of an exercise regimen on development of hypertension in ratsJ Appl Physiol198456381387Open DOISearch in Google Scholar

Véras-Silva AS, Mattos KC, Gava NS, Brum PC, Negrão CE, Krieger EM. Low-intensity exercise training decreases cardiac output and hypertension in spontaneously hypertensive rats. Am J Physiol. 1997; 273:H2627–31.9435596Véras-SilvaASMattosKCGavaNSBrumPCNegrãoCEKriegerEMLow-intensity exercise training decreases cardiac output and hypertension in spontaneously hypertensive ratsAm J Physiol1997273H26273110.1152/ajpheart.1997.273.6.H2627Search in Google Scholar

Shepherd RE, Kuehne ML, Kenno KA. Attenuation of blood pressure increases in Dahl salt-sensitive rats by exercise. J Appl Physiol 1982; 52:1608–1613.10.1152/jappl.1982.52.6.1608ShepherdREKuehneMLKennoKAAttenuation of blood pressure increases in Dahl salt-sensitive rats by exerciseJ Appl Physiol19825216081613Open DOISearch in Google Scholar

Libonati JR, Sabri A, Xiao C, Macdonnell SM, Renna BF. Exercise training improves systolic function in hypertensive myocardium. J Appl Physiol (1985).2011; 111(6):1637–43.2192124110.1152/japplphysiol.00292.2011LibonatiJRSabriAXiaoCMacdonnellSMRennaBFExercise training improves systolic function in hypertensive myocardiumJ Appl Physiol (1985)20111116163743Search in Google Scholar

Endlich PW, Firmes LB, Gonçalves WL, Gouvea SA, Moysés MR, Bissoli NS, Reis AM, Abreu GR. Involvement of the atrial natriuretic peptide in the reduction of arterial pressure induced by swimming but not by running training in hypertensive rats. Peptides. 2011; 32(8):1706–12.2176273910.1016/j.peptides.2011.06.027EndlichPWFirmesLBGonçalvesWLGouveaSAMoysésMRBissoliNSReisAMAbreuGRInvolvement of the atrial natriuretic peptide in the reduction of arterial pressure induced by swimming but not by running training in hypertensive ratsPeptides2011328170612Search in Google Scholar

Goessler KF, Martins-Pinge MC, da Cunha NV, Karlen-Amarante M, de Andrade FG, Polito MD. Direct renin inhibitor therapy and swimming training: hemodynamic and cardiac effects in hypertensive and normotensive rats. Clin Exp Hypertens.2015; 37(4):345–52.10.3109/10641963.2014.97256225347778GoesslerKFMartins-PingeMCda CunhaNVKarlen-AmaranteMde AndradeFGPolitoMDDirect renin inhibitor therapy and swimming training: hemodynamic and cardiac effects in hypertensive and normotensive ratsClin Exp Hypertens201537434552Open DOISearch in Google Scholar

Totou NL, Sá RWM, Alzamora AC, Cardoso LM, Becker LK. Cardiopulmonary Reflex and Blood Pressure Response after Swimming and Treadmill Exercisein Hypertensive Rats. JEPonline. 2015; 18(5):86–95.TotouNLRWMAlzamoraACCardosoLMBeckerLKCardiopulmonary Reflex and Blood Pressure Response after Swimming and Treadmill Exercisein Hypertensive RatsJEP online20151858695Search in Google Scholar

Collins R, Peto R, MacMahon S, Hebert P, Fiebach NH, Eberlein KA, Godwin J, Qizilbash N, Taylor JO, Hennekens CH. Blood pressure, stroke, and coronary heart disease: part 2, short-term reductions in blood pressure: overview of randomized drug trials in their epidemiological context. Lancet. 1990. 335(8693):827–838.10.1016/0140-6736(90)90944-Z1969567CollinsRPetoRMacMahonSHebertPFiebachNHEberleinKAGodwinJQizilbashNTaylorJOHennekensCHBlood pressure, stroke, and coronary heart disease: part 2, short-term reductions in blood pressure: overview of randomized drug trials in their epidemiological contextLancet19903358693827838Open DOISearch in Google Scholar

Zamo FS, Barauna VG, Chiavegatto S, Irigoyen MC, Oliveira EM. The renin-angiotensin system is modulated by swimming training depending on the age of spontaneously hypertensive rats. Life Sci. 2011; 89(3–4):93–9.10.1016/j.lfs.2011.05.00421620872ZamoFSBaraunaVGChiavegattoSIrigoyenMCOliveiraEMThe renin-angiotensin system is modulated by swimming training depending on the age of spontaneously hypertensive ratsLife Sci2011893–493921620872Open DOISearch in Google Scholar

Korsager Larsen M, Matchkov VV. Hypertension and physical exercise: The role of oxidative stress. Medicina (Kaunas). 2016; 52(1):19–27.2698749610.1016/j.medici.2016.01.005Korsager LarsenMMatchkovVVHypertension and physical exercise: The role of oxidative stressMedicina (Kaunas)2016521192726987496Search in Google Scholar

Claudio ER, Almeida SA, Mengal V, Brasil GA, Santuzzi CH, Tiradentes RV, Gouvea SA, Bissoli NS, Santos RL, Abreu GR. Swimming training prevents coronary endothelial dysfunction in ovariectomized spontaneously hypertensive rats. Braz J Med Biol Res. 2017; 50(1):e5495.10.1590/1414-431x2016549528099583ClaudioERAlmeidaSAMengalVBrasilGASantuzziCHTiradentesRVGouveaSABissoliNSSantosRLAbreuGRSwimming training prevents coronary endothelial dysfunction in ovariectomized spontaneously hypertensive ratsBraz J Med Biol Res2017501e5495526453328099583Open DOISearch in Google Scholar

Cardoso AM, Martins CC, Fiorin Fda S, Schmatz R, Abdalla FH, Gutierres J, Zanini D, Fiorenza AM, Stefanello N, Serres JD, Carvalho F, Castro VP, Mazzanti CM, Royes LF, Belló-Klein A, Goularte JF, Morsch VM, Bagatini MD, Schetinger MR. Physical training prevents oxidative stress in L-NAME-induced hypertension rats. Cell Biochem Funct. 2013; 31(2):136–51.10.1002/cbf.286822961602CardosoAMMartinsCCFiorin FdaSSchmatzRAbdallaFHGutierresJZaniniDFiorenzaAMStefanelloNSerresJDCarvalhoFCastroVPMazzantiCMRoyesLFBelló-KleinAGoularteJFMorschVMBagatiniMDSchetingerMRPhysical training prevents oxidative stress in L-NAME-induced hypertension ratsCell Biochem Funct20133121365122961602Open DOISearch in Google Scholar

Goto C, Higashi Y, Kimura M, Noma K, Hara K, Nakagawa K, Kawamura M, Chayama K, Yoshizumi M, Nara I. Effect of different intensities of exercise on endothelium-dependent vasodilation in humans: role of endothelium-dependent nitric oxide and oxidative stress. Circulation. 2003; 108(5):530–5.10.1161/01.CIR.0000080893.55729.2812874192GotoCHigashiYKimuraMNomaKHaraKNakagawaKKawamuraMChayamaKYoshizumiMNaraIEffect of different intensities of exercise on endothelium-dependent vasodilation in humans: role of endothelium-dependent nitric oxide and oxidative stressCirculation20031085530512874192Open DOISearch in Google Scholar

Kilic-Erkek O, Kilic-Toprak E, Caliskan S, Ekbic Y, Akbudak IH, Kucukatay V, Bor-Kucukatay M. Detraining reverses exercise-induced improvement in blood pressure associated with decrements of oxidative stress in various tissues in spontaneously hypertensive rats. Mol Cell Biochem. 2016;412(1–2):209–19.10.1007/s11010-015-2627-426708216Kilic-ErkekOKilic-ToprakECaliskanSEkbicYAkbudakIHKucukatayVBor-KucukatayMDetraining reverses exercise-induced improvement in blood pressure associated with decrements of oxidative stress in various tissues in spontaneously hypertensive ratsMol Cell Biochem20164121–22091926708216Open DOISearch in Google Scholar

Sousa T, Oliveira S, Afonso J, Morato M, Patinha D, Fraga S, Carvalho F, Albino-Teixeira A. Role of H(2) O(2) in hypertension, renin-angiotensin system activation and renal medullary disfunction caused by angiotensin II. Br J Pharmacol. 2012; 166(8):2386–401.10.1111/j.1476-5381.2012.01957.x22452317SousaTOliveiraSAfonsoJMoratoMPatinhaDFragaSCarvalhoFAlbino-TeixeiraARole of H(2) O(2) in hypertension, renin-angiotensin system activation and renal medullary disfunction caused by angiotensin IIBr J Pharmacol201216682386401344890122452317Open DOISearch in Google Scholar

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