{"title":"Influence of Cerebral Ischemia of Various Duration on Mitochondrial Respiration","authors":"N. Maksimovich, T. S. Milosh, I. Dremza","doi":"10.11648/J.BE.20180201.12","DOIUrl":null,"url":null,"abstract":"Estimation of the energy exchange parameters during partial brain ischemia offers an opportunity for finding new ways of correcting the above pathology. The aim of the study was to investigate the changes in mitochondrial respiration in the homogenates of rats with brain cerebral ischemia of various duration. The experiment was carried out on 19 white female rats in whom the right common carotid artery was ligated for 1 hour or 3 days with subsequent decapitation and brain removal. The rate of mitochondrial respiration in mitochondrial suspension of brain homogenates was assessed by means of the polarographic method using succinate or a mixture of L-malate/L-glutamate and adenosine diphosphate as respiratory substrates. Ligation of the right common carotid artery of various duration resulted in reduced mitochondrial respiration rate which was more pronounced after 1 hour of partial brain ischemia as compared to 3 hours. Modeling of partial cerebral ischemia in rats by ligation of the right common carotid artery considerably inhibits respiratory activity of the brain mitochondria leading to the dissociation of oxidation and phosphorylation in the mitochondria and inducing impairment of neuronal bioenergetics in cerebral tissue due to the disturbance of the supply of oxygen by blood. Understanding of pathophysiological processes in mitochondria during partial brain ischemia will help to develop new methods of pathogenetic correction of changes in cell structures of the brain tissue. This approach offers new possibilities for the pathogenetic therapy.","PeriodicalId":8944,"journal":{"name":"Bioprocess Engineering","volume":"1 1","pages":"6"},"PeriodicalIF":0.0000,"publicationDate":"2018-04-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Bioprocess Engineering","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.11648/J.BE.20180201.12","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Estimation of the energy exchange parameters during partial brain ischemia offers an opportunity for finding new ways of correcting the above pathology. The aim of the study was to investigate the changes in mitochondrial respiration in the homogenates of rats with brain cerebral ischemia of various duration. The experiment was carried out on 19 white female rats in whom the right common carotid artery was ligated for 1 hour or 3 days with subsequent decapitation and brain removal. The rate of mitochondrial respiration in mitochondrial suspension of brain homogenates was assessed by means of the polarographic method using succinate or a mixture of L-malate/L-glutamate and adenosine diphosphate as respiratory substrates. Ligation of the right common carotid artery of various duration resulted in reduced mitochondrial respiration rate which was more pronounced after 1 hour of partial brain ischemia as compared to 3 hours. Modeling of partial cerebral ischemia in rats by ligation of the right common carotid artery considerably inhibits respiratory activity of the brain mitochondria leading to the dissociation of oxidation and phosphorylation in the mitochondria and inducing impairment of neuronal bioenergetics in cerebral tissue due to the disturbance of the supply of oxygen by blood. Understanding of pathophysiological processes in mitochondria during partial brain ischemia will help to develop new methods of pathogenetic correction of changes in cell structures of the brain tissue. This approach offers new possibilities for the pathogenetic therapy.
部分脑缺血期间能量交换参数的估计为寻找纠正上述病理的新方法提供了机会。本研究的目的是研究不同持续时间大鼠脑缺血匀浆中线粒体呼吸的变化。实验用19只白色雌性大鼠结扎右侧颈总动脉1小时或3天,然后斩首去脑。用琥珀酸盐或l -苹果酸盐/ l -谷氨酸盐和二磷酸腺苷的混合物作为呼吸底物,采用极谱法评估脑匀浆线粒体悬液中的线粒体呼吸速率。不同时间的右颈总动脉结扎导致线粒体呼吸速率降低,在脑局部缺血1小时后比3小时时更为明显。结扎右颈总动脉的脑局部缺血模型显著抑制脑线粒体的呼吸活动,导致线粒体氧化和磷酸化的解离,并由于血液供氧受阻而导致脑组织神经元生物能量的损害。了解部分脑缺血时线粒体的病理生理过程将有助于开发脑组织细胞结构变化的病理纠正新方法。该方法为病理治疗提供了新的可能性。