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自发性高血压大鼠心脏中葡萄糖和脂肪酸氧化的改变。

Altered glucose and fatty acid oxidation in hearts of the spontaneously hypertensive rat.

作者信息

Christe M E, Rodgers R L

机构信息

Department of Pharmacology and Toxicology, University of Rhode Island, Kingston 02881.

出版信息

J Mol Cell Cardiol. 1994 Oct;26(10):1371-5. doi: 10.1006/jmcc.1994.1155.

Abstract

Metabolic fuel oxidation may be altered in left ventricular hypertrophy (LVH), but detailed characterizations are lacking. Although the spontaneously hypertensive rat (SHR) is a widely used experimental model of LVH, its myocardial fuel oxidation rates are unknown. The purpose of this study was to directly measure glucose and fatty acid (FA) oxidation in the SHR heart ex vivo under controlled loading conditions. Hearts from 15-week-old SHR and Sprague Dawley (SD) rats were perfused in a recirculating system and indices of cardiac performance were continuously monitored. The oxidation of glucose and palmitate were determined simultaneously at low and high workloads by the addition of U-14C-glucose and 9,10-3H-palmitate to the recirculating perfusate. The results demonstrate that FA oxidation of SHR hearts is profoundly suppressed (60-80%) relative to that of the normotensive SD strain, particularly at high workloads. Glucose oxidation is also moderately elevated, yielding a marked (four-to-five-fold) increase in the ratio of glucose/FA oxidation rates in the SHR hearts. Since more ATP is generated per mole of oxygen consumed when glucose is the fuel scource, these results are consistent with the hypothesis that a shift away from FA use toward glucose contributes to the preservation of energetic economy in stable, concentric LVH.

摘要

代谢燃料氧化在左心室肥厚(LVH)中可能会发生改变,但缺乏详细的特征描述。虽然自发性高血压大鼠(SHR)是一种广泛使用的LVH实验模型,但其心肌燃料氧化率尚不清楚。本研究的目的是在可控负荷条件下直接测量离体SHR心脏中的葡萄糖和脂肪酸(FA)氧化。对15周龄的SHR和Sprague Dawley(SD)大鼠的心脏在循环系统中进行灌注,并持续监测心脏功能指标。通过向循环灌注液中添加U-14C-葡萄糖和9,10-3H-棕榈酸,在低负荷和高负荷下同时测定葡萄糖和棕榈酸的氧化。结果表明,相对于正常血压的SD品系,SHR心脏的FA氧化受到显著抑制(60-80%),尤其是在高负荷时。葡萄糖氧化也适度升高,导致SHR心脏中葡萄糖/FA氧化率的比值显著增加(四到五倍)。由于以葡萄糖作为燃料来源时,每消耗一摩尔氧气会产生更多的ATP,这些结果与以下假设一致,即从FA利用转向葡萄糖有助于在稳定的向心性LVH中维持能量代谢。

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