SYNERGIC EFFECT OF PREPARATION WITH COORDINATION COMPLEX “TRIMETHYDRAZINIUM PROPIONATE+ETHYMTH METHYLHYDROXYPIRIDINE SUCCINATE” ON ENERGY METABOLISM AND CELL RESPIRATION

M. Zhuravleva, M. Granovskaya, K. Zaslavskaya, Yu. G. Kazaishvili, V. S. Scherbakova, A. Andreev-Andrievskiy, D. Pozdnyakov, M. Vyssokikh
{"title":"SYNERGIC EFFECT OF PREPARATION WITH COORDINATION COMPLEX “TRIMETHYDRAZINIUM PROPIONATE+ETHYMTH METHYLHYDROXYPIRIDINE SUCCINATE” ON ENERGY METABOLISM AND CELL RESPIRATION","authors":"M. Zhuravleva, M. Granovskaya, K. Zaslavskaya, Yu. G. Kazaishvili, V. S. Scherbakova, A. Andreev-Andrievskiy, D. Pozdnyakov, M. Vyssokikh","doi":"10.19163/2307-9266-2022-10-4-387-399","DOIUrl":null,"url":null,"abstract":"The article presents the results of an in vitro study of the synergetic effect evaluation of the combined preparation based on coordination complex ethylmethylhydroxypyridine succinate and trimethylhydrazinium propionate on energy metabolism and cell respiration.The aim of the study was to evaluate the mitochondria-directed action of the metabolic and antioxidant preparation based on succinic acid coordination complex with trimethylhydrazinium in relation to optimizing the energy metabolism in the cells under the oxidative stress conditions, as well as against the background of ischemic processes.Materials and methods. The study of the hydroxysuccinate complex effect of the drug Brainmax® components was carried out on isolated mouse liver mitochondria. In the course of the study, the potential of mitochondria, the generation rate of hydrogen peroxide during the respiration, the respiration rate were evaluated in the following positions: a) unstimulated by malate and pyruvate, b) stimulated by malate and pyruvate (complex I substrates), by succinate (complex II substrates), c) against the background of the initial section of the electron transport chain blockade by rotenone, d) in phosphorylation blockade by oligomycin, e) against the background of the FCCP-induced uncoupling, and f) in cyanide-blocked complex IV (cytochrome C oxidase).Results. It has been shown that the succinic acid coordination complex with trimethylhydrazinium, which is the active principle of the Brainmax® drug, significantly reduced the transmembrane potential of mitochondria (IC50=197±5 µM), compared with the widely used preparations of ethylmethylhydroxypyridine succinate and trimethylhydrazinium propionate, which facilitates the transfer of the produced ATP into the cell and preserves a vital activity of mitochondria even under stress. In the study of the mitochondrial respiration stimulated by the substrates of complex I (NADP-coenzyme Q-oxidoreductase), pyruvate and malate, the studied drug led to a more pronounced increase in the oxygen consumption with IC50=75±6 µМ. When evaluating the effect of the complex on the production of ATP by mitochondria, the most pronounced effect was observed with the addition of studied complex, which indicated to the uncoupling of respiration and oxidative phosphorylation at the given concentrations of the studied compounds. When assessing the effect of the complex on the production of hydrogen peroxide by isolated mitochondria, a significant decrease in the peroxide production was shown in the samples containing the complex of trimethylhydrazinium propionate and EMHPS.Conclusion. Based on totality of the results obtained, it can be assumed that a favorable conformation of the pharmacophore groups of ethylmethylhydroxypyridine succinate and trimethylhydrozinium propionate coordination complex included in the composition of Brainmax® leads to a synergetic interaction and more pronounced pharmacological effects on target cells. This complex provides stabilization of a mitochondrial function, intensification of the adenosine triphosphate energy production and the optimization of energy processes in the cell, reduces the severity of the oxidative stress and eliminates undesirable effects of an ischemic-hypoxic tissue damage.","PeriodicalId":20031,"journal":{"name":"Pharmacology & Pharmacy","volume":"16 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2022-10-31","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Pharmacology & Pharmacy","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.19163/2307-9266-2022-10-4-387-399","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 3

Abstract

The article presents the results of an in vitro study of the synergetic effect evaluation of the combined preparation based on coordination complex ethylmethylhydroxypyridine succinate and trimethylhydrazinium propionate on energy metabolism and cell respiration.The aim of the study was to evaluate the mitochondria-directed action of the metabolic and antioxidant preparation based on succinic acid coordination complex with trimethylhydrazinium in relation to optimizing the energy metabolism in the cells under the oxidative stress conditions, as well as against the background of ischemic processes.Materials and methods. The study of the hydroxysuccinate complex effect of the drug Brainmax® components was carried out on isolated mouse liver mitochondria. In the course of the study, the potential of mitochondria, the generation rate of hydrogen peroxide during the respiration, the respiration rate were evaluated in the following positions: a) unstimulated by malate and pyruvate, b) stimulated by malate and pyruvate (complex I substrates), by succinate (complex II substrates), c) against the background of the initial section of the electron transport chain blockade by rotenone, d) in phosphorylation blockade by oligomycin, e) against the background of the FCCP-induced uncoupling, and f) in cyanide-blocked complex IV (cytochrome C oxidase).Results. It has been shown that the succinic acid coordination complex with trimethylhydrazinium, which is the active principle of the Brainmax® drug, significantly reduced the transmembrane potential of mitochondria (IC50=197±5 µM), compared with the widely used preparations of ethylmethylhydroxypyridine succinate and trimethylhydrazinium propionate, which facilitates the transfer of the produced ATP into the cell and preserves a vital activity of mitochondria even under stress. In the study of the mitochondrial respiration stimulated by the substrates of complex I (NADP-coenzyme Q-oxidoreductase), pyruvate and malate, the studied drug led to a more pronounced increase in the oxygen consumption with IC50=75±6 µМ. When evaluating the effect of the complex on the production of ATP by mitochondria, the most pronounced effect was observed with the addition of studied complex, which indicated to the uncoupling of respiration and oxidative phosphorylation at the given concentrations of the studied compounds. When assessing the effect of the complex on the production of hydrogen peroxide by isolated mitochondria, a significant decrease in the peroxide production was shown in the samples containing the complex of trimethylhydrazinium propionate and EMHPS.Conclusion. Based on totality of the results obtained, it can be assumed that a favorable conformation of the pharmacophore groups of ethylmethylhydroxypyridine succinate and trimethylhydrozinium propionate coordination complex included in the composition of Brainmax® leads to a synergetic interaction and more pronounced pharmacological effects on target cells. This complex provides stabilization of a mitochondrial function, intensification of the adenosine triphosphate energy production and the optimization of energy processes in the cell, reduces the severity of the oxidative stress and eliminates undesirable effects of an ischemic-hypoxic tissue damage.
配合物“丙酸三甲基哌嗪+琥珀酸乙甲基羟吡啶”制备对能量代谢和细胞呼吸的协同作用
本文报道了以琥珀酸乙基甲基羟吡啶和丙酸三甲基肼配合物为基础的联合制剂对能量代谢和细胞呼吸的协同作用的体外研究结果。本研究的目的是评价基于三甲基肼琥珀酸配合物的代谢和抗氧化制剂在氧化应激条件下以及在缺血过程背景下优化细胞能量代谢的线粒体定向作用。材料和方法。在离体小鼠肝线粒体上研究了药物Brainmax®组分的羟琥珀酸复合物作用。在研究过程中,线粒体的潜能、呼吸过程中过氧化氢的生成速率、呼吸速率在以下位置进行了评估:a)苹果酸盐和丙酮酸盐未刺激,b)苹果酸盐和丙酮酸盐(络合物I底物),琥珀酸盐(络合物II底物)刺激,c)鱼藤酮阻断电子传递链初始段背景下,d)寡霉素磷酸化阻断背景下,e) fccp诱导解偶联背景下,f)氰化物阻断络合物IV(细胞色素c氧化酶)。研究表明,与广泛使用的琥珀酸甲基羟吡啶琥珀酸乙酯和丙酸三甲基肼制剂相比,作为Brainmax®药物的活性成分,琥珀酸与三甲基肼配合物显著降低了线粒体的跨膜电位(IC50=197±5µM),这有助于将产生的ATP转移到细胞中,即使在应激条件下也能保持线粒体的重要活性。在复合物I (nadp -辅酶q -氧化还原酶)底物、丙酮酸盐和苹果酸盐刺激线粒体呼吸的研究中,所研究的药物导致更明显的氧气消耗增加,IC50=75±6µМ。当评估复合物对线粒体产生ATP的影响时,最显著的影响是观察到所研究的复合物的添加,这表明在给定浓度的所研究的化合物下,呼吸和氧化磷酸化解耦。当评估复合物对分离线粒体生成过氧化氢的影响时,在含有丙酸三甲基肼和emhp复合物的样品中,过氧化氢的生成显着减少。基于所获得的总体结果,可以假设Brainmax®组合物中包含的乙基甲基琥珀酸羟吡啶和丙酸三甲基氢锌配合物的药效团基团的有利构象导致协同相互作用和对靶细胞更显着的药理作用。该复合物提供线粒体功能的稳定,加强三磷酸腺苷能量的产生和优化细胞内的能量过程,降低氧化应激的严重程度,消除缺血-缺氧组织损伤的不良影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
求助全文
约1分钟内获得全文 求助全文
来源期刊
自引率
0.00%
发文量
0
×
引用
GB/T 7714-2015
复制
MLA
复制
APA
复制
导出至
BibTeX EndNote RefMan NoteFirst NoteExpress
×
提示
您的信息不完整,为了账户安全,请先补充。
现在去补充
×
提示
您因"违规操作"
具体请查看互助需知
我知道了
×
提示
确定
请完成安全验证×
copy
已复制链接
快去分享给好友吧!
我知道了
右上角分享
点击右上角分享
0
联系我们:info@booksci.cn Book学术提供免费学术资源搜索服务,方便国内外学者检索中英文文献。致力于提供最便捷和优质的服务体验。 Copyright © 2023 布克学术 All rights reserved.
京ICP备2023020795号-1
ghs 京公网安备 11010802042870号
Book学术文献互助
Book学术文献互助群
群 号:481959085
Book学术官方微信