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氨基酸对缺血再灌注大鼠心脏底物选择、回补反应及左心室功能的影响。

Effects of amino acids on substrate selection, anaplerosis, and left ventricular function in the ischemic reperfused rat heart.

作者信息

Jessen M E, Kovarik T E, Jeffrey F M, Sherry A D, Storey C J, Chao R Y, Ring W S, Malloy C R

机构信息

Dallas Veterans Affairs Medical Center, Texas.

出版信息

J Clin Invest. 1993 Aug;92(2):831-9. doi: 10.1172/JCI116657.

DOI:10.1172/JCI116657
PMID:8102382
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC294921/
Abstract

The effect of aspartate and glutamate on myocardial function during reperfusion is controversial. A beneficial effect has been attributed to altered delivery of carbon into the citric acid cycle via substrate oxidation or by stimulation of anaplerosis, but these hypotheses have not been directly tested. 13C isotopomer analysis is well suited to the study of myocardial metabolism, particularly where isotopic and metabolic steady state cannot be established. This technique was used to evaluate the effects of aspartate and glutamate (amino acids, AA) on anaplerosis and substrate selection in the isolated rat heart after 25 min of ischemia followed by 30 or 45 min of reperfusion. Five groups of hearts (n = 8) provided with a mixture of [1,2-13C]acetate, [3-13C]lactate, and unlabeled glucose were studied: control, control plus AA, ischemia followed by 30 min of reperfusion, ischemia plus AA followed by 30 min of reperfusion, and ischemia followed by 45 min of reperfusion. The contribution of lactate to acetyl-CoA was decreased in postischemic myocardium (with a significant increase in acetate), and anaplerosis was stimulated. Metabolism of 13C-labeled aspartate or glutamate could not be detected, however, and there was no effect of AA on functional recovery, substrate selection, or anaplerosis. Thus, in contrast to earlier reports, aspartate and glutamate have no effect on either functional recovery from ischemia or on metabolic pathways feeding the citric acid cycle.

摘要

天冬氨酸和谷氨酸在再灌注期间对心肌功能的影响存在争议。一种有益作用被归因于通过底物氧化或刺激回补反应改变碳向柠檬酸循环的输送,但这些假设尚未得到直接验证。13C 同位素异构体分析非常适合用于研究心肌代谢,尤其是在无法建立同位素和代谢稳态的情况下。本技术用于评估天冬氨酸和谷氨酸(氨基酸,AA)对离体大鼠心脏在缺血 25 分钟后再灌注 30 或 45 分钟时回补反应和底物选择的影响。研究了五组心脏(n = 8),每组心脏均给予 [1,2-13C] 乙酸盐、[3-13C] 乳酸盐和未标记葡萄糖的混合物:对照组、对照组加 AA、缺血后再灌注 30 分钟、缺血加 AA 后再灌注 30 分钟、缺血后再灌注 45 分钟。缺血后心肌中乳酸对乙酰辅酶 A 的贡献降低(乙酸盐显著增加),回补反应受到刺激。然而,未检测到 13C 标记的天冬氨酸或谷氨酸的代谢,且 AA 对功能恢复、底物选择或回补反应均无影响。因此,与早期报告相反,天冬氨酸和谷氨酸对缺血后的功能恢复或对为柠檬酸循环供能的代谢途径均无影响。

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本文引用的文献

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Reversal of ischemic damage with amino acid substrate enhancement during reperfusion.再灌注期间通过增强氨基酸底物逆转缺血性损伤。
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Preferential uptake of lactate by the normal myocardium in dogs.犬正常心肌对乳酸的优先摄取。
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Tricarboxylic acid cycle metabolites during ischemia in isolated perfused rat heart.离体灌注大鼠心脏缺血期间的三羧酸循环代谢产物
Am J Physiol. 1983 Feb;244(2):H281-8. doi: 10.1152/ajpheart.1983.244.2.H281.
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Regulation of the tricarboxylic acid cycle pool size in heart muscle.心肌中三羧酸循环代谢物池大小的调节
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Regulation of pyruvate dehydrogenase complex in ischemic rat heart.缺血大鼠心脏中丙酮酸脱氢酶复合体的调节
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Warm induction of cardioplegia with glutamate-enriched blood in coronary patients with cardiogenic shock who are dependent on inotropic drugs and intra-aortic balloon support.
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