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Original

Cardiac Mechanical Dysfunction Induced by Ischemia‐reperfusion in Perfused Heart Isolated from Stroke‐prone Spontaneously Hypertensive Rats

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Pages 485-498 | Published online: 13 Oct 2004

References

  • Levy D. Left ventricular hypertrophy. Epidemiological insights from the Framingham heart study. Drugs 1988; 35(suppl 5)1–5, [PUBMED], [INFOTRIEVE]
  • Levy D, Garrison R J, Savage D D, Kannel W B, Castelli W P. Prognostic implications of echocardiographically determined left ventricular mass in the Framingham heart study. N Engl J Med 1990; 322: 1561–1566, [PUBMED], [INFOTRIEVE]
  • Gosse P, Clementy J. Coronary reserve in experimental myocardial hypertrophy. Eur Heart J 1995; 16(suppl I)22–25, [PUBMED], [INFOTRIEVE]
  • Koyanagi S, Eastham C, Marcus M L. Effects of chronic hypertension and left ventricular hypertrophy on the incidence of sudden cardiac death after coronary artery occlusion in conscious dogs. Circulation 1982; 65: 1192–1197, [PUBMED], [INFOTRIEVE]
  • Koyanagi S, Eastham C L, Harrison D G, Marcus M L. Increased size of myocardial infarction in dogs with chronic hypertension and left ventricular hypertrophy. Circ Res 1982; 50: 55–62, [PUBMED], [INFOTRIEVE]
  • Brilla C G, Janicki J S, Weber K T. Cardioreparative effects of lisinopril in rats with genetic hypertension and left ventricular hypertrophy. Circulation 1991; 83: 1771–1779, [PUBMED], [INFOTRIEVE]
  • Simpson P. Norepinephrine‐stimulated hypertrophy of cultured rat myocardial cells is an alpha1 adrenergic response. J Clin Invest 1983; 72: 732–738, [PUBMED], [INFOTRIEVE]
  • Ito H, Bell D, Tamamori M, Nozato T, Shimojo T, Adachi S, Abe S, Marumo F, Hiroe M. Calcitonin gene‐related peptide (CGRP) and hypertrophy of cardiomyocytes. Heart Vessels, Suppl 1997; 12: 15–17
  • Porreca E, Febbo C D, Mincione G, Reale M, Baccante G, Guglielmi M D, Cuccurullo F, Colletta G. Increased transforming growth factor‐β production and gene expression by peripheral blood monocytes of hypertensive patients. Hypertension 1997; 30: 134–139, [PUBMED], [INFOTRIEVE], [CSA]
  • Fukuzawa J, Osaki J, Haneda T. Differential effects of amiloride on the basal rate and the pressure overload‐induced increase in protein synthesis in perfused rat heart. Clin Exp Hypertens 1994; 16: 835–852, [PUBMED], [INFOTRIEVE]
  • Komuro I, Katoh Y, Kaida T, Shibazaki Y, Kurabayashi M, Hoh E, Takaku F, Yazaki Y. Mechanical loading stimulates cell hypertrophy and specific gene expression in cultured rat cardiac myocytes. J Biol Chem 1991; 266: 1265–1268, [PUBMED], [INFOTRIEVE]
  • Schoemaker R G, Leenen F HH, Harmsen E. Age‐related increase in sensitivity for ischemic ATP breakdown in hypertrophic hearts of SHR normalized by enalapril. J Mol Cell Cardiol 1994; 26: 649–660, [PUBMED], [INFOTRIEVE], [CROSSREF], [CSA]
  • Haneda T, Osaki J, Kikuchi K. Hypertensive cardiac hypertrophy. Clinical Science of Hypertension, T Fujita. Saishinigaku Co., Osaka 1996; 253–262
  • Haneda T, Ichihara K, Abiko Y, Onodera S. Functional and metabolic responses to ischemia in the perfused heart isolated from normotensive and spontaneously hypertensive rats. Jpn Circ J 1986; 50: 607–613, [PUBMED], [INFOTRIEVE]
  • Tokoro T, Ito H, Suzuki T. Alterations in mitochondrial DNA and enzyme activities in hypertrophied myocardium of stroke‐prone SHRs. Clin Exp Hypertens 1996; 18: 595–606, [PUBMED], [INFOTRIEVE]
  • Nasa Y, Ichihara K, Abiko Y. Both d‐cis‐ and l‐cis‐diltiazem have anti‐ischemic action in the isolated, perfused working rat heart. J Pharmacol Exp Ther 1990; 255: 680–689, [PUBMED], [INFOTRIEVE]
  • Bernt E, Bergmeyer H U. Isocitrate dehydrogenase. UV‐assay. Methods of Enzymatic Analysis, H U Bergmeyer. Academic Press, New York 1974; Vol. 2: 624–627
  • Wharton D C, Tzagoloff A. Cytochrome oxidase from beef heart mitochondria. Methods in Enzymology, R W Estabrook, M E Pullman. Academic Press, New York 1967; Vol. 10: 245–250
  • Oyanagui Y. Reevaluation of assay methods and establishment of kit for superoxide dismutase activity. Anal Biochem 1984; 142: 290–296, [PUBMED], [INFOTRIEVE], [CROSSREF]
  • Lowry O H, Rosebrough N J, Farr A L, Randall R J. Protein measurement with the Folin phenol reagent. J Biol Chem 1951; 193: 265–275, [PUBMED], [INFOTRIEVE]
  • Neely J R, Liebermeister H, Battersby E J, Morgan H E. Effect of pressure development on oxygen consumption by isolated rat heart. Am J Physiol 1967; 212: 804–814, [PUBMED], [INFOTRIEVE]
  • Chen H, Azuma M, Maeda K, Kajimoto N, Higashino H. Impaired heart function and noradrenaline release after ischemia in stroke‐prone spontaneously hypertensive rats. Clin Exp Pharmacol Physiol 2000; 27: 664–670, [PUBMED], [INFOTRIEVE], [CROSSREF]
  • Chen H, Higashino H, Maeda K, Zhang Z, Ohta Y, Wang Z, Su D F, Yuan W J. Reduction of cardiac norepinephrine improves postischemic heart function in stroke‐prone spontaneously hypertensive rats. J Cardiovasc Pharmacol 2001; 38: 821–832, [PUBMED], [INFOTRIEVE], [CROSSREF], [CSA]
  • Tanaka H, Obata H, Haneda T. Effects of regression of left ventricular hypertrophy following atenolol or bunazosin therapy on ischemic cardiac function and myocardial metabolism in spontaneously hypertensive rats. Jpn Circ J 1991; 55: 1233–1245, [PUBMED], [INFOTRIEVE]
  • Baker K M, Aceto J F. Angiotensin II stimulation of protein synthesis and cell growth in chick heart cells. Am J Physiol 1990; 259: H610–H618, [PUBMED], [INFOTRIEVE]
  • Ito H, Hirata Y, Hiroe M, Tsujino M, Adachi S, Takamoto T, Nitta M, Taniguchi K, Marumo F. Endothelin‐1 induces hypertrophy with enhanced expression of muscle‐specific genes in cultured neonatal rat cardiomyocytes. Circ Res 1991; 69: 209–215, [PUBMED], [INFOTRIEVE], [CSA]
  • Shimamoto N, Goto N, Tanabe M, Imamoto T, Fujiwara S, Hirata M. Myocardial energy metabolism in the hypertrophied hearts of spontaneously hypertensive rats. Basic Res Cardiol 1982; 77: 359–371, [PUBMED], [INFOTRIEVE]
  • Peyton R B, Jones R N, Attarian D, Sink J D, Trigt P V, Currie W D, Wechsler A S. Depressed high‐energy phosphate content in hypertrophied ventricles of animal and man. The biologic basis for increased sensitivity to ischemic injury. Ann Surg 1982; 196: 278–284, [PUBMED], [INFOTRIEVE]
  • Yamamoto N, Otsuka Y, Kushiro T, Kajiwara N. Role of superoxide anion on onset and maintenance of hypertension in spontaneously hypertensive rats. Nippon Jinzo Gakkai Shi 1992; 34: 717–723, [PUBMED], [INFOTRIEVE]
  • Rauch U, Schulze K, Witzenbichler B, Schultheiss H P. Alteration of the cytosolic‐mitochondrial distribution of high‐energy phosphates during global myocardial ischemia may contribute to early contractile failure. Circ Res 1994; 75: 760–769, [PUBMED], [INFOTRIEVE], [CSA]
  • Hugtenburg J G, Mathy M‐J, de Haan N, Beckeringh J J, vanZwieten P A. The influence of calcium antagonists on the adenine nucleotide metabolism in the guinea‐pig working heart during ischaemia and reperfusion. Naunyn‐Schmiedeberg's Arch Pharmacol 1991; 343: 496–504, [CSA]
  • Schneider A, Zimmer H‐G. Effect of inosine on function and adenine nucleotide content of the isolated working rat heart: studies of postischemic reperfusion. J Cardiovasc Pharmacol 1991; 17: 466–473, [PUBMED], [INFOTRIEVE]
  • Hugtenburg J G, Mathy M‐J, Veldsema‐Currie R D, Boddeke H WGM, Beckeringh J J, van Zwieten P A. A comparison of the cardioprotective effects of calcium antagonists from different classes upon ischaemic damage in the guinea‐pig working heart. Naunyn‐Schmiedeberg's Arch Pharmacol 1989; 340: 126–134
  • Szekeres L, Udvary E, Vegh A. Importance of myocardial blood flow changes in the protective action of diltiazem in a new model of myocardial ischaemia. Br J Pharmacol 1985; 86: 341–350, [PUBMED], [INFOTRIEVE]
  • Hoque A NE, Hoque N, Hashizume H, Abiko Y. A study on dilazep: I. mechanism of anti‐ischemic action of dilazep is not coronary vasodilation but decreased cardiac mechanical function in the isolated, working rat heart. Jpn J Pharmacol 1995; 67: 225–232, [PUBMED], [INFOTRIEVE], [CSA]
  • Hamm C W, Opie L H. Protection of infarcting myocardium by slow channel inhibitors. Comparative effects of verapamil, nifedipine, and diltiazem in the coronary‐ligated, isolated working rat heart. Circ Res 1983; 52: I129–I138, [PUBMED], [INFOTRIEVE]
  • Lopaschuk G D, Barr R, Wambolt R. Effects of diltiazem on glycolysis and oxidative metabolism in the ischemic and ischemic/reperfused heart. J Pharmacol Exp Ther 1992; 260: 1220–1228, [PUBMED], [INFOTRIEVE], [CSA]

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