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在严重低流量缺血期间,肥大的大鼠心脏中葡萄糖利用和糖原周转加速。

Glucose utilization and glycogen turnover are accelerated in hypertrophied rat hearts during severe low-flow ischemia.

作者信息

Wambolt R B, Henning S L, English D R, Dyachkova Y, Lopaschuk G D, Allard M F

机构信息

Department of Pathology and Laboratory Medicine, University of British Columbia-St Paul's Hospital, Vancouver, Canada.

出版信息

J Mol Cell Cardiol. 1999 Mar;31(3):493-502. doi: 10.1006/jmcc.1998.0804.

Abstract

We undertook this study to determine if the metabolism of exogenous glucose and glycogen in hypertrophied hearts differed from that in normal hearts during severe ischemia. Thus, rates of glycolysis (3H2O production) and oxidation (14CO2 production) from exogenous glucose and glycogen were measured in isolated working control (n = 13) and hypertrophied (n = 12) hearts from sham-operated and aortic-banded rats during 40 min of severe low-flow ischemia. Hearts, in which glycogen was prelabelled with [5-3H]- or [14C]-glucose, were paced and perfused with Krebs-Henseleit solution containing 1.2 mM palmitate, 5.5 mM [5-3H]- or [14C]-glucose (different from the isotope used to label glycogen), 0.5 mM lactate and 100 microU/ml insulin during ischemia. Rates of glycolysis from exogenous glucose (3301 +/- 122 v 2467 +/- 167 nmol/min/g dry wt, mean +/- S.E.M., P < 0.05) and glucose from glycogen (808 +/- 27 v 725 +/- 21 nmol/min/g dry wt, P < 0.05) were accelerated in hypertrophied hearts compared to control hearts. However, rates of oxidation of exogenous glucose and glucose from glycogen were not significantly different between the two groups. As observed in normoxic non-ischemic hearts, glucose from glycogen was preferentially oxidized compared to exogenous glucose. Additionally, rates of glycogen synthesis (167 +/- 7 v 140 +/- 9 nmol/min/g dry wt, P < 0.05) were increased in hypertrophied hearts compared to control hearts during severe low-flow ischemia indicating that glycogen turnover (i.e. simultaneous synthesis and degradation) was accelerated in the hypertrophied heart. Thus, we demonstrate that glucose utilization and glycogen turnover are accelerated in the hypertrophied heart during severe low-flow ischemia as compared to the normal heart.

摘要

我们开展这项研究,以确定在严重缺血期间,肥厚心脏中外源性葡萄糖和糖原的代谢是否与正常心脏不同。因此,在40分钟的严重低流量缺血期间,测量了来自假手术和主动脉缩窄大鼠的离体工作对照心脏(n = 13)和肥厚心脏(n = 12)中外源性葡萄糖和糖原的糖酵解速率(产生3H2O)和氧化速率(产生14CO2)。用[5-3H]-或[14C]-葡萄糖预标记糖原的心脏,在缺血期间用含有1.2 mM棕榈酸、5.5 mM [5-3H]-或[14C]-葡萄糖(与用于标记糖原的同位素不同)、0.5 mM乳酸和100微单位/毫升胰岛素的克雷布斯-亨塞尔特溶液进行起搏和灌注。与对照心脏相比,肥厚心脏中外源性葡萄糖的糖酵解速率(3301 +/- 122对2467 +/- 167 nmol/分钟/克干重,平均值 +/- 标准误,P < 0.05)和糖原中的葡萄糖糖酵解速率(808 +/- 27对725 +/- 21 nmol/分钟/克干重,P < 0.05)加快。然而,两组之间外源性葡萄糖和糖原中的葡萄糖氧化速率没有显著差异。正如在常氧非缺血心脏中所观察到的,与外源性葡萄糖相比,糖原中的葡萄糖优先被氧化。此外,在严重低流量缺血期间,与对照心脏相比,肥厚心脏中的糖原合成速率(167 +/- 7对140 +/- 9 nmol/分钟/克干重,P < 0.05)增加,表明肥厚心脏中糖原周转(即同时合成和降解)加快。因此,我们证明,与正常心脏相比,在严重低流量缺血期间,肥厚心脏中的葡萄糖利用和糖原周转加快。

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