Planta Med 2000; 66(6): 516-520
DOI: 10.1055/s-2000-8653
Original Paper
Georg Thieme Verlag Stuttgart · New York

Intravenous Pretreatment with Magnolol Protects Myocardium Against Stunning

Cheng-Hsiung Huang1,4 , Chuang-Ye Hong2,4 , Shen-Kou Tsai3,4,*, Shiau-Ting Lai1 , Zen-Chung Weng1 , Chun-Lien Chih1 , Y-Houng Hsieh1
  • 1 Department of Surgery, Veterans General Hospital, Taipei, Taiwan, R.O.C.
  • 2 Department of Medicine, Veterans General Hospital, Taipei, Taiwan, R.O.C.
  • 3 Department of Anesthesiology, College of Medicine, Taiwan University Hospital, Taipei, Taiwan, R.O.C.
  • 4 Institute of Clinical Medicine, Yang-Ming University School of Medicine, Taipei, Taiwan, R.O.C.
Further Information

Publication History

Publication Date:
31 December 2000 (online)

Abstract

Magnolol, an antioxidant, has been reported to possess various protective effects on the cardiovascular system. However, its effect on myocardial stunning has not been elucidated. The purpose of this study was to investigate the anti-stunning effect of magnolol by evaluating the recovery of regional myocardial function after 10-minute coronary artery occlusion in anesthetized, open-chest rabbits. There was no significant hemodynamic change after intravenous infusion of magnolol. Systolic wall thickening fraction (WThF) measured with an epicardial Doppler sensor in animals pretreated with normal saline and vehicle solution remained significantly depressed (60 ± 7 % and 77 ± 4 % of baseline WThF, respectively) 3 hours after coronary artery reperfusion (CAR). Pretreatment with magnolol (10-7 and 10-6 g/kg, intravenous infusion) significantly enhanced the recovery of systolic wall thickening fraction (98 ± 1 and 99 ± 1 % of baseline WThF, respectively) 60 minutes after CAR. This study demonstrated that intravenous pretreatment with magnolol protected myocardium against stunning.

References

  • 1 Lo  Y C,, Teng  C M,, Chen  C F,, Chen  C C,, Hong  C Y.. Magnolol and honokiol isolated from Magnolia officinalis protect rat heart mitochondria against lipid peroxidation.  Biochemical Pharmacology. 1994;;  47 549-53
  • 2 Lin  M H,, Chao  H T,, Hong  C Y.. Magnolol protects human sperm motility against lipid peroxidation: a sperm head fixation method.  Archives of Andrology. 1995;;  34 151-6
  • 3 Hong  C Y,, Huang  S S,, Tsai  S K.. Magnolol reduces infarct size and suppresses ventricular arrhythmia in rats subjected to coronary ligation.  Clinical and Experimental Pharmacology and Physiology. 1996;;  23 660-4
  • 4 Bolli  R.. Mechanism of myocardial “stunning”.  Circulation. 1990;;  82 723-38
  • 5 Zughaib  M E,, Tang  X L,, Schleman  M,, Jeroudi  M O,, Bolli  R.. Beneficial effects of MDL 74,405, a cardioselective water soluble alpha tocopherol analogue, on the recovery of function of stunned myocardium in intact dogs.  Cardiovascular Research. 1994;;  28 235-41
  • 6 Tang  X L,, Kaur  H,, Sun  J Z,, Qiu  Y,, Park  S W,, Schleman  M,, Halliwell  B,, Bolli  R.. Effect of the hydrophilic alpha-tocopherol analog MDL 74,405 on detection of hydroxyl radicals in stunned myocardium in dogs.  American Heart Journal. 1995;;  130 940-8
  • 7 Bolli  R,, Zhu  W X,, Thornby  J I,, PG O N,, Roberts  R.. Time course and determinants of recovery of function after reversible ischemia in conscious dogs.  American Journal of Physiology. 1998;;  254 H102-14
  • 8 Walker  M J,, Curtis  M J,, Hearse  D J,, Campbell  R W,, Janse  M J,, Yellon  D M,, Cobbe  S M,, Coker  S J,, Harness  J B,, Harron  D W, et al.. The Lambeth Conventions: guidelines for the study of arrhythmias in ischaemia infarction, and reperfusion.  Cardiovascular Research. 1988;;  22 447-55
  • 9 Bolli  R,, Patel  B S,, Jeroudi  M O,, Lai  E K,, McCay  P B.. Demonstration of free radical generation in “stunned” myocardium of intact dogs with the use of the spin trap alpha-phenyl-N-tert-butylnitrone.  Journal of Clinical Investigation. 1988;;  82 476-85
  • 10 Bolli  R,, Jeroudi  M O,, Patel  B S,, Aruoma  O I,, Halliwell  B,, Lai  E K,, McCay  P B.. Marked reduction of free radical generation and contractile dysfunction by antioxidant therapy begun at the time of reperfusion. Evidence that myocardial “stunning” is a manifestation of reperfusion injury.  Circulation Research. 1989;;  65 607-22
  • 11 Grill  H P,, Zweier  J L,, Kuppusamy  P,, Weisfeldt  M L,, Flaherty  J T.. Direct measurement of myocardial free radical generation in an in vivo model: effects of postischemic reperfusion and treatment with human recombinant superoxide dismutase.  Journal of the American College of Cardiology. 1992;;  20 1604-11
  • 12 Przyklenk  K,, Kloner  R A.. Superoxide dismutase plus catalase improve contractile function in the canine model of the “stunned myocardium”.  Circulation Research. 1986;;  58 148-56
  • 13 Koerner  J E,, Anderson  B A,, Dage  R C.. Protection against postischemic myocardial dysfunction in anesthetized rabbits with scavengers of oxygen-derived free radicals: superoxide dismutase plus catalase, N-2-mercaptopropionyl glycine and captopril.  Journal of Cardiovascular Pharmacology. 1991;;  17 185-91
  • 14 Beckman  D L,, Crittenden  D J.. Protection from oxygen-induced seizures by clonazepam and propylene glycol.  Proceedings of Society for Experimental Biology and Medicine. 1981;;  168 45-8

Ph.D. MD Prof. Shen-Kou Tsai

College of Medicine National Taiwan University National Taiwan University Hospital

Chairman, Department of Anesthesiology Professor of Anesthesiology

7, Chung-Shan South Road

Taipei

Taiwan, 100-16, R.O.C.

Email: sktsai@ha.mc.ntu.edu.tw

Phone: 011-886-2-23415736

Fax: 011-886-2-23562157

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