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特戊酸钠诱导的继发性肉碱缺乏模型中的脂肪酸氧化与心脏功能

Fatty acid oxidation and cardiac function in the sodium pivalate model of secondary carnitine deficiency.

作者信息

Broderick T L, Christos S C, Wolf B A, DiDomenico D, Shug A L, Paulson D J

机构信息

Department of Physiology, Midwestern University, Downers Grove, IL 60515, USA.

出版信息

Metabolism. 1995 Apr;44(4):499-505. doi: 10.1016/0026-0495(95)90058-6.

Abstract

Carnitine-deficiency syndromes are often associated with alterations in lipid metabolism and cardiac function. The present study was designed to determine whether this is also seen in an experimental model of carnitine deficiency. Carnitine deficiency was induced in male Sprague-Dawley rats supplemented with sodium pivalate for 26 to 28 weeks. This treatment resulted in nearly a 60% depletion of myocardial total carnitine content as compared with control hearts. When isolated working hearts from these animals were perfused with 5.5 mmol/L glucose and 1.2 mmol/L palmitate and subjected to incremental increases in left-atrial filling pressures, cardiac function remained dramatically depressed. The effects of carnitine deficiency on glucose and palmitate utilization were also assessed in hearts perfused at increased workload conditions. At this workload, function was depressed in carnitine-deficient hearts, as were rates of 1.2-mmol/L [U-14C]-palmitate oxidation, when compared with control hearts (544 +/- 37 vs 882 +/- 87 nmol/g dry weight.min, P < .05). However, glucose oxidation rates from 5.5 mmol/L [U-14C]-glucose were slightly increased in carnitine-deficient hearts. To determine whether the depressed fatty acid oxidation rates were a result of reduced mechanical function in carnitine-deficient hearts, the workload of hearts was reduced. Under these conditions, mechanical function was similar among control and carnitine-deficient hearts. Palmitate oxidation rates were also similar in these hearts (526 +/- 69 v 404 +/- 47 nmol/g dry weight.min for control and carnitine-deficient hearts, respectively).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

肉碱缺乏综合征常与脂质代谢和心脏功能改变有关。本研究旨在确定在肉碱缺乏的实验模型中是否也会出现这种情况。通过给雄性Sprague-Dawley大鼠补充特戊酸钠26至28周来诱导肉碱缺乏。与对照心脏相比,这种处理导致心肌总肉碱含量减少了近60%。当用5.5 mmol/L葡萄糖和1.2 mmol/L棕榈酸灌注这些动物的离体工作心脏,并使左心房充盈压逐渐升高时,心脏功能仍显著降低。还在增加工作负荷条件下灌注的心脏中评估了肉碱缺乏对葡萄糖和棕榈酸利用的影响。在这种工作负荷下,与对照心脏相比,肉碱缺乏心脏的功能降低,1.2 mmol/L [U-14C] -棕榈酸氧化速率也降低(分别为544±37与882±87 nmol/g干重·分钟,P<.05)。然而,肉碱缺乏心脏中5.5 mmol/L [U-14C] -葡萄糖的葡萄糖氧化速率略有增加。为了确定脂肪酸氧化速率降低是否是肉碱缺乏心脏机械功能降低的结果,降低了心脏的工作负荷。在这些条件下,对照心脏和肉碱缺乏心脏的机械功能相似。这些心脏中的棕榈酸氧化速率也相似(对照心脏和肉碱缺乏心脏分别为526±69与404±47 nmol/g干重·分钟)。(摘要截短于250字)

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