Acute effects of triiodothyronine on glucose and fatty acid metabolism during reperfusion of ischemic rat hearts

被引:25
作者
Liu, Q
Clanachan, AS
Lopaschuk, GD
机构
[1] Univ Alberta, Dept Pediat, Cardiovasc Res Grp, Edmonton, AB T6G 2S2, Canada
[2] Univ Alberta, Dept Pharmacol, Edmonton, AB T6G 2S2, Canada
来源
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM | 1998年 / 275卷 / 03期
关键词
glycolysis; glucose oxidation; fatty acid oxidation; hydrogen production;
D O I
10.1152/ajpendo.1998.275.3.E392
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Clinical studies have demonstrated improved myocardial recovery after severe ischemia in response to acute triiodothyronine (T-3) treatment. We determined whether T-3 improves the recovery of ischemic hearts by improving energy substrate metabolism. Isolated working rat hearts were perfused with 5.5 mM glucose and 1.2 mM palmitate and were subjected to 30 min of no-flow ischemia. Glycolysis, glucose oxidation, and palmitate oxidation were measured during aerobic reperfusion by adding [5-H-3]glucose, [U-C-14]glucose, or [9,10-H-3]palmitate to the perfusate, respectively. During reperfusion, cardiac work in untreated hearts recovered to a lesser extent than myocardial O-2 consumption (M (V) over dot o(2)), resulting in a decreased recovery of cardiac efficiency, which recovered to only 25% of preischemic values. Treatment of hearts with T-3 (10 nM) before ischemia increased glucose oxidation during reperfusion, which was associated with a significant increase in pyruvate dehydrogenase (PDH) activity, the rate-limiting enzyme for glucose oxidation. In contrast, T-3 had no effect on M (V) over dot o(2), glycolysis, or palmitate oxidation. This resulted in a significant decrease in H+ production from glycolysis uncoupled from glucose oxidation (2.7 +/- 0.3 and 1.9 +/- 0.3 mu mol . g dry wt(-1) min(-1) in control and TB-treated hearts, respectively, P < 0.05), as well as a 3.2-fold improvement in cardiac work and a 2.3-fold increase in cardiac efficiency compared with untreated postischemic hearts (P < 0.05). These data suggest that T-3 can exert acute effects that improve the coupling of glycolysis to glucose oxidation, thereby decreasing Hf production and increasing cardiac efficiency as well as contractile function during reperfusion of the postischemic heart.
引用
收藏
页码:E392 / E399
页数:8
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