Volgograd State Medical University, Volgograd, Russia.
Herzen Russian State Pedagogical University, St. Petersburg, Russia.
Biomed Khim. 2023 Apr;69(2):112-124. doi: 10.18097/PBMC20236902112.
The cardioprotective effects of new derivatives of glutamic acid (glufimet) and GABA (mefargin) were studied in rats exposed to acute alcohol intoxication (AAI) under conditions of selective blockade of inducible NO-synthase (iNOS). AAI induced a pronounced decrease in the contractile function of the myocardium during exercise tests (load by volume, test for adrenoreactivity, isometric exercise), caused mitochondrial dysfunction and increased processes of lipid peroxidation (LPO) in heart cells. A decrease in NO production during iNOS inhibition and AAI improved the respiratory function of mitochondria, a decreased the level of LPO products, and increased mitochondrial superoxide dismutase activity of heart cells. This led to an increase in myocardial contractility. The studied compounds, glufimet and mefargin, caused a statistically significant increase in the rates of myocardial contraction and relaxation, left ventricular pressure, and also reduced NO production. This was accompanied by a decrease in the intensity of LPO processes and an increase in the respiratory control ratio (RCR), reflecting the coupling between respiration and phosphorylation processes during activation of the respiratory chain complexes I and II. The decrease in NO concentration during selective blockade of iNOS and administration of the studied substances was less pronounced than without blockade of the enzyme. This suggests the putative effect of new derivatives of neuroactive amino acids on the NO system.
研究了新型谷氨酸衍生物(glufimet)和 GABA 衍生物(mefargin)在选择性抑制诱导型一氧化氮合酶(iNOS)条件下,急性酒精中毒(AAI)大鼠中的心脏保护作用。AAI 在运动试验(容积负荷、肾上腺素反应性试验、等长运动)期间引起心肌收缩功能明显下降,导致线粒体功能障碍和细胞内脂质过氧化(LPO)过程增加。iNOS 抑制和 AAI 期间 NO 生成减少改善了线粒体的呼吸功能,降低了 LPO 产物的水平,并增加了心肌细胞的线粒体超氧化物歧化酶活性。这导致心肌收缩力增加。研究的化合物 glufimet 和 mefargin 导致心肌收缩和舒张速度、左心室压力的统计学显著增加,同时降低了 NO 的产生。这伴随着 LPO 过程强度的降低和呼吸控制比(RCR)的增加,反映了呼吸链复合物 I 和 II 激活期间呼吸和磷酸化过程的偶联。选择性抑制 iNOS 和给予研究物质时,NO 浓度的降低不如没有抑制酶时明显。这表明新型神经活性氨基酸衍生物对 NO 系统可能具有影响。