Disorders Of Mitochondrial Respiration in Rats with Subtotal Cerebral Ischemia Under Conditions of The Use of Modulators of the L-Arginine-No Pathway and Against the Background of The Administration of Omega-3 Polyunsaturated Fatty Acids

Maksimovich N. Ye, Dremza I.K.,, Kovalenya T.A.,, Kokhan N.V.
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Abstract

The urgency of the problem of cerebrovascular diseases can rightfully be defined as an emergency, requiring the concentration of efforts of specialists. This is due to the fact that cerebrovascular diseases of ischemic origin tend to grow, rejuvenate, are associated with a severe clinical course, high rates of disability and mortality. Omega-3 polyunsaturated fatty acids are involved in the implementation of the basic functions of neurons, such as the transmission of impulses and the functioning of receptors. In this regard, it is of interest to study the morphofunctional features of brain neurons in rats with subtotal cerebral ischemia against the background of the introduction of Omega-3 polyunsaturated fatty acids and L-NAME. There was a significant improvement in the parameters of mitochondrial respiration when using succinate as a substrate in the group of animals treated with Omega-3 PUFAs and even greater activation in the groups of animals SCI + L-NAME + Omega-3 and SCI + L-NAME + L-arginine + Omega-3. When malate/glutamate was used as a substrate in these groups, the same trend in respiration was observed as when succinate was used to activate mitochondrial respiration. However, changes in succinate-dependent respiration were more pronounced.
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使用l -精氨酸- no通路调节剂和Omega-3多不饱和脂肪酸对次全脑缺血大鼠线粒体呼吸障碍的影响
脑血管疾病问题的紧迫性可以被正确地定义为紧急情况,需要专家集中精力。这是因为缺血性脑血管疾病往往会生长、恢复活力,并伴有严重的临床病程、高致残率和死亡率。Omega-3多不饱和脂肪酸参与神经元基本功能的实现,如脉冲的传递和受体的功能。因此,在引入Omega-3多不饱和脂肪酸和L-NAME的背景下,研究脑次全缺血大鼠脑神经元的形态功能特征具有重要意义。在使用Omega-3 PUFAs处理的动物组中,当使用琥珀酸盐作为底物时,线粒体呼吸参数有显著改善,SCI + L-NAME + Omega-3和SCI + L-NAME + l -精氨酸+ Omega-3组的激活程度更高。当在这些组中使用苹果酸盐/谷氨酸作为底物时,观察到与使用琥珀酸盐激活线粒体呼吸时相同的呼吸趋势。然而,琥珀酸依赖呼吸的变化更为明显。
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