水杨酸对肝细胞乳酸代谢的影响。

Biomedica biochimica acta Pub Date : 1991-01-01
R Rognstad
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引用次数: 0

摘要

我们使用稳态模型研究了水杨酸对大鼠肝细胞乳酸代谢通量的影响。水杨酸产生解偶联作用,抑制糖异生,显著激活丙酮酸脱氢酶通量,抑制内源性脂肪酸氧化。并对已知功能的二硝基苯酚和二氯乙酸酯进行了比较。水杨酸对糖异生的体外抑制作用主要与解偶联作用无关。辛酸盐而不是棕榈酸盐能克服水杨酸盐对糖异生的抑制,这一事实表明水杨酸辅酶a参与了抑制。为了将体外研究与体内Reye综合征(中链二羧酸积累)联系起来,我们还研究了亚酸一甲基对肝脏乳酸代谢的影响。这种半酯被肝细胞吸收,并引起乳酸糖异生和解偶联的抑制。水杨酸盐和亚酸单甲基均可抑制肝细胞对0.2 mM辛酸盐的氧化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of salicylate on hepatocyte lactate metabolism.

We have examined the effects of salicylate on fluxes of lactate metabolism in rat hepatocytes using a steady state model. Salicylate produces an uncoupling effect, an inhibition of gluconeogenesis, a marked activation of pyruvate dehydrogenase flux, and an inhibition of endogenous fatty acid oxidation. Agents with known functions such as dinitrophenol and dichloroacetate were also compared in this system. The in vitro inhibition of gluconeogenesis caused by salicylate is not primarily related to the uncoupling effect. The fact that octanoate, but not palmitate, overcomes the salicylate inhibition of gluconeogenesis suggests that salicylyl CoA is involved in the inhibition. To relate in vitro studies to Reye's syndrome in vivo, in which medium chain dicarboxylic acids accumulate, we have also examined the effects of monomethyl suberate on liver lactate metabolism. This half ester is taken up by the hepatocytes, and causes inhibition of lactate gluconeogenesis, and uncoupling. Both salicylate and monomethyl suberate inhibit the oxidation of 0.2 mM octanoate by hepatocytes.

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