ATP-SENSITIVE K+ CHANNELS IN CARDIAC ISCHEMIA - AN ENDOGENOUS MECHANISM FOR PROTECTION OF THE HEART

被引:35
|
作者
COLE, WC [1 ]
机构
[1] UNIV MANITOBA,DEPT PHYSIOL,DIV CARDIOVASC SCI,WINNIPEG R3T 2N2,MANITOBA,CANADA
关键词
ISCHEMIA; CARDIOPROTECTION; ACTION POTENTIAL; ATP-SENSITIVE K+ CHANNELS; GLIBENCLAMIDE; PINACIDIL; WHOLE-CELL VOLTAGE CLAMP;
D O I
10.1007/BF00877618
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The Role of ATP-sensitive K+ channels (K(ATP)) in action potential shortening and protection of myocardium in ischemia were explored using isolated ventricular myocytes and arterially perfused right ventricular walls of guinea pigs. Conditions ''simulating'' some aspects of ischemia-(10.8 mM K0+, 6.9 pH0, 20 mM lactate, no glucose; 10 mM 2-deoxy-D-glucose; and either 1 mM cyanide or no O2 (bubbled with 95/5% N2/CO2)-caused a decline in action potential duration (APD) and the elaboration of time- and voltage-independent, steady-state outward conductance due to K(ATP), which could be inhibited with glibenclamide (50 muM) in myocytes studied via the perforated patch (nystatin) whole-cell technique. Right ventricular walls subjected to no-flow ischemia +/- glibenclamide (10 muM) to block, or +/- pinacidil (1 and 10 muM) to activate, K(ATP), respectively, exhibited varied ischemic injury. Glibenclamide caused a greater fall in resting membrane potential, inhibited the decline in APD, caused an early rise in resting tension, and inhibited recovery of contractile function upon reflow. Pinacidil caused a greater decline in APD, inhibited changes in resting tension, and improved recovery during reperfusion. These results indicate that K(ATP) contributes to action potential shortening in isolated myocytes in simulated ischemia and intact myocardium in no-flow ischemia. Activation of this membrane current may be an important adaptive mechanism for protecting the myocardium when blood flow to the tissue is compromised.
引用
收藏
页码:527 / 537
页数:11
相关论文
共 50 条
  • [31] ATP-sensitive K+ channels in renal mitochondria
    Cancherini, DV
    Trabuco, LG
    Rebouças, NA
    Kowaltowski, AJ
    AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2003, 285 (06) : F1291 - F1296
  • [32] ADP INTERFERES WITH BLOCKADE OF CARDIAC ATP-SENSITIVE K+ CHANNELS BY GLYBURIDE
    VENKATESH, N
    WEISS, JN
    CIRCULATION, 1990, 82 (04) : 520 - 520
  • [33] MEMBRANE DEPOLARIZATION IS A NOVEL MODULATOR OF CARDIAC ATP-SENSITIVE K+ CHANNELS
    TERZIC, A
    JAHANGIR, A
    KURACHI, Y
    CIRCULATION, 1994, 90 (04) : 525 - 525
  • [34] Molecular mechanism of activation of ATP-sensitive K+ channels by K+ channel openers.
    Yamada, M
    Matsushita, K
    Kurachi, Y
    JOURNAL OF PHARMACOLOGICAL SCIENCES, 2003, 91 : 28P - 28P
  • [35] Cardioprotective role of adenosine and ATP-sensitive K+ channels in the ischemic heart
    Hori, M
    Kitakaze, M
    Inoue, M
    RECENT PROGRESS IN ELECTROPHARMACOLOGY OF THE HEART, 1996, : 83 - 94
  • [36] On the mechanism of ADP-induced alteration of sulphonylurea sensitivity in cardiac ATP-sensitive K+ channels
    Miyamura, A
    Kakei, M
    Ichinari, K
    Okamura, M
    Oketani, N
    Tei, C
    BRITISH JOURNAL OF PHARMACOLOGY, 2000, 130 (06) : 1411 - 1417
  • [37] ATP-SENSITIVE K+ CHANNELS AND CELLULAR K+ LOSS DURING EARLY MYOCARDIAL HYPOXIA AND ISCHEMIA
    WEISS, JN
    VENKATESH, N
    LAMP, ST
    CIRCULATION, 1990, 82 (04) : 341 - 341
  • [38] ACTIVATION OF ATP-SENSITIVE K+ CHANNELS AND CELLULAR K+ LOSS
    DEUTSCH, N
    ALEXANDER, LD
    SHANG, P
    WEISS, JN
    BIOPHYSICAL JOURNAL, 1994, 66 (02) : A427 - A427
  • [39] Modulation of cardiac ATP-sensitive K+ channels: Potential electrophysiological outcome during myocardial ischemia and reperfusion
    Nakaya, H
    Kobayashi, S
    Takizawa, T
    Hara, Y
    Uemura, H
    Saito, T
    Kimura, S
    Masuda, Y
    RECENT PROGRESS IN ELECTROPHARMACOLOGY OF THE HEART, 1996, : 107 - 117
  • [40] Phosphoinositides decrease ATP sensitivity of the cardiac ATP-sensitive K+ channel -: A molecular probe or the mechanism of ATP-sensitive inhibition
    Fan, Z
    Makielski, JC
    JOURNAL OF GENERAL PHYSIOLOGY, 1999, 114 (02): : 251 - 269