Cardioprotection by GSK-3 inhibition: role of enhanced glycogen synthesis and attenuation of calcium overload

被引:38
作者
Omar, Mohamed A. [1 ]
Wang, Lianguo [1 ]
Clanachan, Alexander S. [1 ]
机构
[1] Univ Alberta, Fac Med & Dent, Dept Pharmacol, Edmonton, AB T6G 2H7, Canada
关键词
Heart; Ischaemia; reperfusion; GSK-3; Glucose metabolism; Calcium; PERMEABILITY TRANSITION PORE; DEPENDENT ANION CHANNEL; WORKING RAT HEARTS; SYNTHASE KINASE-3-BETA; MYOCARDIAL PROTECTION; MECHANICAL FUNCTION; CARDIAC EFFICIENCY; REPERFUSION INJURY; PKC-EPSILON; ISCHEMIA;
D O I
10.1093/cvr/cvp421
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Glycogen synthase kinase-3 (GSK-3) is a multi-functional kinase that regulates signalling pathways affecting glycogen metabolism, protein synthesis, mitosis, and apoptosis. GSK-3 inhibition limits cardiac ischaemia-reperfusion (IR) injury, but mechanisms are not clearly defined. This study tested the hypothesis that acute GSK-3 inhibition stimulates glycogen synthesis, repartitions glucose away from glycolysis, reduces proton (H+) production from glucose metabolism, and attenuates intracellular Ca2+ (Ca-i(2+)) overload. In isolated perfused working rat hearts subjected to global ischaemia and reperfusion, the selective GSK-3 inhibitor, SB-216763 (SB, 3 mu mol/L), when added either prior to ischaemia or at the onset of reperfusion, improved recovery of left-ventricular (LV) work. SB increased glycogen synthesis during reperfusion while glycolysis and H+ production were reduced. Rates of glucose and palmitate oxidation were improved by SB. Measurement of Ca-i(2+) concentration by rapid acquisition indo-1 fluorescence imaging showed that SB, when added either prior to ischaemia or at the onset of reperfusion, reduced diastolic Ca-i(2+) overload during reperfusion. In aerobic hearts depleted of glycogen by substrate-free perfusion to a level similar to that measured at the onset of reperfusion, SB accelerated glycogen synthesis and reduced glycolysis and H+ production independent of changes in LV work. Our study indicates that reduction in H+ production by GSK-3 inhibition is an early and upstream event that lessens Ca-i(2+) overload during ischaemia and early reperfusion independent of LV work which enhances the recovery of post-ischaemic LV function and that may ultimately contribute to previously observed reductions in cell death and infarction.
引用
收藏
页码:478 / 486
页数:9
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