6
Views
6
CrossRef citations to date
0
Altmetric
Original Article

Changes in Creatine Kinase Expression Induced by Exercise in Borderline Hypertensive Rat Hearts

, &
Pages 577-593 | Received 07 Sep 1993, Accepted 01 Feb 1994, Published online: 03 Jul 2009

References

  • Scheuer J., Buttrick P. The cardiac hypertrophic responses to pathologic and physiologic loads. Circ. 1987; 75(I)163–168
  • Frohlich E. D., Apstein C., Chobanian A. V., Devereux R. B., Dustan H. P., Fauad-Tarazi F., Horan M. J., Marcus M., Massie B., Pfeffer M. A., Re R. N., Roccella E. J., Savage D., Shub C. The heart in hypertension. N Engl J Med. 1992; 327(14)998–1008
  • Schaible T. F., Scheuer J. Effects of physical training by running or swimming on ventricular performance of rat hearts. J Appl Physiol. 1979; 46(4)854–860
  • Bowles D. K., Farrar R. P., Starnes J. W. Exercise training improves cardiac function after ischemia in the isolated, working rat heart. Am J Physiol. 1992; 263: H804–H809
  • Jacobus W. E., Lehninger A. L. Creatine Kinase of rat heart mitochondria. J Biol Chem. 1973; 248(13)4803–4810
  • Ingwall J. S. The hypertrophied myocardium accumulates the MB-creatine kinase isozyme. Eur Heart J. 1984; 5(Suppl F)129–139
  • Ingwall J. S., Kramer M. F., Friedman W. F. Developmental changes in heart creatine kinase. Heart Creatine Kinase, W. E. Jacobus, J. S. Ingwall. Williams and Wilkins, Baltimore 1980; 9–16
  • Ingwall J. S., Kramer M. A., Fifer M. A., Lorrell B. H., Shemin R., Grossman W., Allen P. D. The creatine kinase system in normal and diseased human myocardium. N Engl J Med. 1985; 313: 1050–1054
  • Smith S. H., Kramer M. F., Reis I., Bishop S. P., Ingwall J. S. Regional changes in creatine kinase and myocyte size in hypertensive and nonhypertensive cardiac hypertrophy. Circ Res. 1990; 67: 1334–1344
  • Younes A., Schneider J. M., Bercovici J., Swynghedauw B. Redistribution of creatine kinase isoenzymes in chronically overloaded myocardium. Cardiovasc Res. 1984; 19: 15–19
  • Anderson P. G., Allard M. F., Thomas G. D., Bishop S. P., Digerness S. B. Increased ischemic injury but decreased hypoxic injury in hypertrophied rat hearts. Circ Res. 1990; 67: 948–959
  • Ingwall J. S. Is cardiac failure a consequence of decreased energy reserve. Circulation 1993; 87(suppl VII)VII-58–VII-62
  • Apple F. S., Tesch P. A. CK and LD isozymes in human single muscle fibers in trained athletes. J Appl Physiol. 1989; 66(6)2717–2720
  • Lawler J. E., Sanders B. J., Chen Y. F., Nagahama S., Oparil S. Hypertension produced by a high sodium diet in the borderline hypertensive rat (BHR). Clin. Exper. Hyper. 1987; A9(11)1713–1731
  • Lawler J. E., Barker G. F., Hubbard J. W., Schaub R. G. Effects of stress on blood pressure and cardiac pathology in rats with borderline hypertension. Hypertension 1981; 3: 496–505
  • Melby C. J., Sanders B. J., Johnson A. K. The effects of exercise training on salt-induced hypertension in the borderline hypertensive rat. Clin Exp Hyper. 1991; 13(5)865–872
  • Rosalki S. B. An improved procedure for creatine phosphokinase determination. J Lab Clin Med. 1967; 69(4)696–705
  • Hall N., DeLuca M. Electrophoretic separation and quantitation of creatine kinase isozymes. Anal Biochem. 1976; 76: 561–567
  • Fields N. G., Yaun B., Leenen H. H. Sodium-induced cardiac hypertrophy, cardiac sympathetic activity versus volume overload. Circ Res. 1991; 68: 745–755
  • Yaun B., Leenen F. H. H. Dietary sodium intake and left ventricular hypertrophy in normotensive rats. Am J Physiol. 1991; 261: H1397–H1401
  • Harmsen E., Leenen F. H. H. Dietary sodium induced cardiac hypertrophy. Can J Physiol Pharmacol. 1992; 70: 580–586
  • Sen S., Young D. R. Role of Sodium in modulation of myocardial hypertrophy in renal hypertensive rats. Hypertension 1986; 8: 918–924
  • Sharma R. V., Tomanek R. J., Bhalla R. C. Effect of swimming training on cardiac function and myosin ATPase activity in SHR. J Appl. Physiol. 1985; 59(3)758–765
  • Pfeffer M. A., Ferrell B. A., Pfeffer J. M., Weiss A. K., Fishbein M. C., Frohlich E. D. Ventricular morphology and pumping ability of exercised spontaneously hypertensive rats. Am J. Physiol. 1978; 235(2)H193–H199
  • Lutgemeir I., Luft F. C., Unger T., Ganten U., Lang R. E., Gless K. H. Ganten D. Blood Pressure, electrolyte and adrenal responses in swim-trained hypertensive rats. J Hypertens. 1987; 5(2)241–247
  • Rupp H., Jacob R. Response of blood pressure and cardiac myosin polymorphism to swimming training in the spontaneously hypertensive rat. Can J Physiol Pharmacol. 1982; 60: 1098–1103
  • Lawler J. E., O'Conner E. F., Naylor S. K., Browning R. T., Baldwin D. R. The effect of chronic exercise on blood pressure (BP) and reactivity to stress in rats with zero, one or two parents with high BP. FASEB J 1990; 4: A680, (Abst).
  • Mokhtar N., Rousseau-Migneron S., Tancrede G., Nadeau A. Partial correction of impaired creatine kinase activity in diabetic rat heart by physical training. Metabolism: Clinical and Experimental 1992; 41(9)1004–1008

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.