Differential effects of the Ca2+ sensitizers caffeine and CGP 48506 on the relaxation rate of rat skinned cardiac trabeculae

被引:25
作者
Palmer, S [1 ]
Kentish, JC [1 ]
机构
[1] UNITED MED & DENT SCH,ST THOMAS HOSP,DEPT PHARMACOL,LONDON SE1 7EH,ENGLAND
关键词
caffeine; CGP; 48506; Ca2+ sensitizer; crossbridge; relaxation rate;
D O I
10.1161/01.RES.80.5.682
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
During heart failure, force production by the heart decreases. This may be overcome by Ca2+-sensitizing drugs, which increase myofibril Ca2+ sensitivity without necessarily altering intracellular Ca2+ concentration. However, Ca2+ sensitizers slow the relaxation of intact cardiac muscle. We used diazo-2, a caged chelator of Ca2+, to study the effects of the Ca2+ sensitizers caffeine and CGP 45506 on the intrinsic relaxation rate of cardiac myofibrils. Trabeculae from rat right ventricles were skinned by 1% Triton X-100 and were activated in a 10-mu L bath. In steady state experiments, CGP 48506 (10 mu mol/L) shifted the force-pCa curve leftward by 0.41+/-0.03 pCa units (mean+/-SEM, n=6). An identical shift was induced by caffeine (20 mmol/L). Photolysis of diazo-2 by a flash of light (160 mJ, 310 to 400 nm) caused an immediate decrease in Ca2+-activated force produced by the trabeculae. Relaxation was fitted by a double-exponential decay, and the rate constants were found to be independent of force and preflash Ca2+ concentration. The initial fast rate, corresponding to myofibrillar relaxation, was increased from 17.3+/-2.0 to 30.9+/-3.7 s(-1) (n=4) by caffeine but was unaffected by CGP 48506 (16.6+/-1.7 and 14.4+/-2.3 s(-1) in the absence and presence of drug, respectively; n=5). Thus, myofibril relaxation need not be slowed by Ca2+-sensitizing agents but can even be accelerated. Despite similarities in their effects on myofibril Ca2+ sensitivity, caffeine and CGP 48506 affect the myofibrils at least partly via different mechanisms.
引用
收藏
页码:682 / 687
页数:6
相关论文
共 23 条
[1]   BIOLOGICALLY USEFUL CHELATORS THAT TAKE UP CA-2+ UPON ILLUMINATION [J].
ADAMS, SR ;
KAO, JPY ;
TSIEN, RY .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1989, 111 (20) :7957-7968
[2]  
Allen D G, 1980, Eur Heart J, VSuppl A, P5
[3]  
BUTCHER RW, 1962, J BIOL CHEM, V237, P1244
[4]   Kinetic studies of calcium binding to the regulatory site of troponin C from cardiac muscle [J].
Dong, WJ ;
Rosenfeld, SS ;
Wang, CK ;
Gordon, AM ;
Cheung, HC .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (02) :688-694
[5]   5-METHYL-6-PHENYL-1,3,5,6-TETRAHYDRO-3,6-METHANO-1,5-BENZODIAZOCINE-2,4-DIONE (BA-41899) - REPRESENTATIVE OF A NOVEL CLASS OF PURELY CALCIUM-SENSITIZING AGENTS [J].
HEROLD, P ;
HERZIG, JW ;
WENK, P ;
LEUTERT, T ;
ZBINDEN, P ;
FUHRER, W ;
STUTZ, S ;
SCHENKER, K ;
MEIER, M ;
RIHS, G .
JOURNAL OF MEDICINAL CHEMISTRY, 1995, 38 (15) :2946-2954
[6]   THE EFFECTS OF INORGANIC-PHOSPHATE AND CREATINE-PHOSPHATE ON FORCE PRODUCTION IN SKINNED MUSCLES FROM RAT VENTRICLE [J].
KENTISH, JC .
JOURNAL OF PHYSIOLOGY-LONDON, 1986, 370 :585-604
[7]  
Lee J. A., 1993, MODULATION CARDIAC C
[8]   Photolysis of the novel inotropes EMD 57033 and EMD 57439: Evidence that Ca2+ sensitization and phosphodiesterase inhibition depend upon the same enantiomeric site [J].
Lee, JA ;
Palmer, S ;
Kentish, JC .
BRITISH JOURNAL OF PHARMACOLOGY, 1996, 118 (08) :2037-2044
[9]   THE 2 MECHANISMS OF ACTION OF RACEMIC CARDIOTONIC EMD-53998, CALCIUM SENSITIZATION AND PHOSPHODIESTERASE INHIBITION, RESIDE IN DIFFERENT ENANTIOMERS [J].
LUES, I ;
BEIER, N ;
JONAS, R ;
KLOCKOW, M ;
HAEUSLER, G .
JOURNAL OF CARDIOVASCULAR PHARMACOLOGY, 1993, 21 (06) :883-892
[10]   PROTECTION OF HUMAN LEFT-VENTRICULAR MYOCARDIUM FROM CUTTING INJURY WITH 2,3-BUTANEDIONE MONOXIME [J].
MULIERI, LA ;
HASENFUSS, G ;
ITTLEMAN, F ;
BLANCHARD, EM ;
ALPERT, NR .
CIRCULATION RESEARCH, 1989, 65 (05) :1441-1444