Jarzyna R, Kiersztan A, Lisowa O, Bryła J
Department of Metabolism Regulation, Institute of Biochemistry, Warsaw University, Ul. Miecznikowa 1, 02-096, Warsaw, Poland.
Eur J Pharmacol. 2001 Oct 12;428(3):381-8. doi: 10.1016/s0014-2999(01)01221-3.
The effect of chloroquine on gluconeogenesis in isolated hepatocytes and kidney-cortex tubules of rabbit has been studied. The inhibitory action of 200 microM chloroquine was the highest in hepatocytes and renal tubules incubated with glutamine and glutamate+glycerol+octanoate, respectively, while in the presence of other substrates the drug action was less pronounced. With amino acids as substrates, the inhibition of gluconeogenesis was accompanied by a decreased glutamine production, resulting from a decline of glutamate dehydrogenase activity. A decrease in the urea production by hepatocytes incubated with chloroquine in the presence of glutamine but not NH4Cl as the source of ammonium is in agreement with this suggestion. The degree of inhibition by chloroquine of the rate of gluconeogenesis in renal tubules isolated from control rabbits was similar to that determined in diabetic animals. Chloroquine-induced changes in levels of intracellular gluconeogenic intermediates indicate a decrease in phosphoenolpyruvate carboxykinase and glucose-6-phosphatase activities probably due to increased concentration of 2-oxoglutarate, an inhibitor of these two enzymes. In view of the data, it is likely that inhibition by chloroquine of glucose formation in liver and kidney may contribute to the hypoglycaemic action of this drug. The importance of the inhibitory effect of chloroquine on glutamate dehydrogenase activity in the antihyperglycaemic action of the drug is discussed.
已研究了氯喹对兔离体肝细胞和肾皮质肾小管糖异生的影响。200微摩尔氯喹的抑制作用在分别用谷氨酰胺和谷氨酸+甘油+辛酸孵育的肝细胞和肾小管中最为显著,而在存在其他底物时,该药物的作用则不太明显。以氨基酸为底物时,糖异生的抑制伴随着谷氨酰胺生成的减少,这是由于谷氨酸脱氢酶活性下降所致。在以谷氨酰胺而非氯化铵作为铵源的情况下,用氯喹孵育的肝细胞尿素生成减少,这与该观点一致。氯喹对从对照兔分离的肾小管中糖异生速率的抑制程度与在糖尿病动物中测定的相似。氯喹诱导的细胞内糖异生中间产物水平变化表明,磷酸烯醇式丙酮酸羧激酶和葡萄糖-6-磷酸酶活性降低,这可能是由于这两种酶的抑制剂2-氧代戊二酸浓度增加所致。鉴于这些数据,氯喹对肝脏和肾脏中葡萄糖生成的抑制作用可能有助于该药物的降血糖作用。本文讨论了氯喹对谷氨酸脱氢酶活性的抑制作用在该药物抗高血糖作用中的重要性。