The structural analogue of apelin-12 prevents energy disorders in the heart in experimental type 1 diabetes mellitus.

Q3 Biochemistry, Genetics and Molecular Biology Biomeditsinskaya khimiya Pub Date : 2024-06-01 DOI:10.18097/PBMC20247003135
I M Studneva, O M Veselova, I V Dobrokhotov, L I Serebryakova, M E Palkeeva, D V Avdeev, A S Molokoedov, M V Sidorova, O I Pisarenko
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Abstract

Type 1 diabetes mellitus (T1DM) is the most severe form of diabetes, which is characterized by absolute insulin deficiency induced by the destruction of pancreatic beta cells. The aim of this study was to evaluate the effect of a structural analogue of apelin-12 ((NαMe)Arg-Pro-Arg-Leu-Ser-His-Lys-Gly-Pro-Nle-Pro-Phe-OH, metilin) on hyperglycemia, mitochondrial (MCh) respiration in permeabilized cardiac left ventricular (LV) fibers, the myocardial energy state, and cardiomyocyte membranes damage in a model of streptozotocin (STZ) diabetes in rats. Metilin was prepared by solid-phase synthesis using the Fmoc strategy and purified using HPLC. Four groups of animals were used: initial state (IS); control (C), diabetic control (D) and diabetic animals additionally treated with metilin (DM). The following parameters have been studied: blood glucose, MCh respiration in LV fibers, the content of cardiac ATP, ADP, AMP, phosphocreatine (PCr) and creatine (Cr), the activity of creatine kinase-MB (CK-MB) and lactate dehydrogenase (LDH) in blood plasma. Administration of metilin to STZ-treated rats decreased blood glucose, increased state 3 oxygen consumption, the respiratory control ratio in MCh of permeabilized LV fibers, and increased the functional coupling of mitochondrial CK (mt-CK) to oxidative phosphorylation compared with these parameters in group D. In STZ-treated animals metilin administration caused an increase in the PCr content and prevention of the loss of total creatine (ΣCr=PCr+Cr) in the diabetic hearts, as well as restoration of the PCr/ATP ratio in the myocardium and a decrease in the activity of CK-MB and LDH in plasma to initial values. Thus, metilin prevented energy disorders disturbances in cardiomyocytes of animals with experimental T1DM.

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凋亡素-12的结构类似物可预防实验性1型糖尿病患者心脏能量紊乱。
1 型糖尿病(T1DM)是最严重的糖尿病,其特点是胰岛β细胞被破坏导致胰岛素绝对缺乏。本研究旨在评估apelin-12的结构类似物((NαMe)Arg-Pro-Arg-Leu-Ser-His-Lys-Gly-Pro-Nle-Pro-Phe-OH,metilin)对链脲佐菌素(STZ)糖尿病模型大鼠的高血糖、透化左心室(LV)纤维线粒体(MCh)呼吸、心肌能量状态和心肌细胞膜损伤的影响。采用 Fmoc 策略通过固相合成制备 Metilin,并使用 HPLC 进行纯化。实验共使用了四组动物:初始状态(IS)、对照组(C)、糖尿病对照组(D)和使用美替林额外治疗的糖尿病动物(DM)。研究了以下参数:血糖、左心室纤维的 MCh 呼吸、心脏 ATP、ADP、AMP、磷酸肌酸(PCr)和肌酸(Cr)的含量、血浆中肌酸激酶-MB(CK-MB)和乳酸脱氢酶(LDH)的活性。与 D 组的这些参数相比,STZ 处理的大鼠服用甲替林后血糖降低,状态 3 耗氧量增加,透化左心室纤维 MCh 的呼吸控制比增加,线粒体肌酸激酶(mt-CK)与氧化磷酸化的功能耦合增加。在 STZ 处理的动物中,服用甲替林可增加 PCr 含量,防止糖尿病心脏中总肌酸(ΣCr=PCr+Cr)的损失,恢复心肌中 PCr/ATP 的比率,并将血浆中 CK-MB 和 LDH 的活性降至初始值。因此,甲替林能防止实验性 T1DM 动物心肌细胞的能量紊乱。
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来源期刊
Biomeditsinskaya khimiya
Biomeditsinskaya khimiya Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
CiteScore
1.30
自引率
0.00%
发文量
49
期刊介绍: The aim of the Russian-language journal "Biomeditsinskaya Khimiya" (Biomedical Chemistry) is to introduce the latest results obtained by scientists from Russia and other Republics of the Former Soviet Union. The Journal will cover all major areas of Biomedical chemistry, including neurochemistry, clinical chemistry, molecular biology of pathological processes, gene therapy, development of new drugs and their biochemical pharmacology, introduction and advertisement of new (biochemical) methods into experimental and clinical medicine etc. The Journal also publish review articles. All issues of journal usually contain invited reviews. Papers written in Russian contain abstract (in English).
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