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阿戈美拉汀的抗糖基化氧化作用——研究与系统文献综述

Agomelatine's antiglycoxidative action- and research and systematic literature review.

作者信息

Nesterowicz Miłosz, Lauko Kamil Klaudiusz, Żendzian-Piotrowska Małgorzata, Ładny Jerzy Robert, Zalewska Anna, Maciejczyk Mateusz

机构信息

Students' Scientific Club "Biochemistry of Civilization Diseases" at the Department of Hygiene, Epidemiology and Ergonomics, Medical University of Bialystok, Białystok, Poland.

Department of Hygiene, Epidemiology and Ergonomics, Medical University of Bialystok, Białystok, Poland.

出版信息

Front Psychiatry. 2023 Apr 25;14:1164459. doi: 10.3389/fpsyt.2023.1164459. eCollection 2023.

Abstract

INTRODUCTION

Agomelatine is an atypical antidepressant drug enhancing norepinephrine and dopamine liberation; nevertheless, additional mechanisms are considered for the drug's pharmacological action. Since protein glycoxidation plays a crucial role in depression pathogenesis, agomelatine's impact on carbonyl/oxidative stress was the research purpose.

METHODS

Reactive oxygen species scavenging (hydroxyl radical, hydrogen peroxide, and nitrogen oxide) and antioxidant capacity (2,2-diphenyl-1-picrylhydrazyl radical and ferrous ion chelating assays) of agomelatine were marked. Agomelatine's antiglycoxidation properties were assayed in sugars (glucose, fructose, and galactose) and aldehydes- (glyoxal and methylglyoxal) glycated bovine serum albumin (BSA). Aminoguanidine and α-lipoic acid were used as standard glycation/oxidation inhibitors.

RESULTS

Agomelatine did not show meaningful scavenging/antioxidant capacity vs. standards. Sugars/aldehydes increased glycation (↑kynurenine, ↑N-formylkynurenine, ↑dityrosine, ↑advanced glycation end products, and ↑β-amyloid) and oxidation (↑protein carbonyls and ↑advanced oxidation protein products) parameters in addition to BSA. Standards restored BSA baselines of glycation and oxidation markers, unlike agomelatine which sometimes even intensifies glycation above BSA + glycators levels. Molecular docking analysis of agomelatine in BSA demonstrated its very weak binding affinity.

DISCUSSION

Agomelatine's very low affinity to the BSA could proclaim non-specific bonding and simplify attachment of glycation factors. Thereby, the drug may stimulate brain adaptation to carbonyl/oxidative stress as the systematic review indicates. Moreover, the drug's active metabolites could exert an antiglycoxidative effect.

摘要

引言

阿戈美拉汀是一种非典型抗抑郁药,可增强去甲肾上腺素和多巴胺的释放;然而,该药物的药理作用还存在其他机制。由于蛋白质糖基化氧化在抑郁症发病机制中起关键作用,因此研究阿戈美拉汀对羰基/氧化应激的影响。

方法

测定阿戈美拉汀的活性氧清除能力(羟基自由基、过氧化氢和氮氧化物)和抗氧化能力(2,2-二苯基-1-苦基肼自由基和亚铁离子螯合试验)。在糖(葡萄糖、果糖和半乳糖)和醛(乙二醛和甲基乙二醛)糖化的牛血清白蛋白(BSA)中检测阿戈美拉汀的抗糖基化氧化特性。氨基胍和α-硫辛酸用作标准糖基化/氧化抑制剂。

结果

与标准品相比,阿戈美拉汀未显示出有意义的清除/抗氧化能力。除BSA外,糖/醛增加了糖化(犬尿氨酸升高、N-甲酰犬尿氨酸升高、二酪氨酸升高、晚期糖基化终产物升高和β-淀粉样蛋白升高)和氧化(蛋白质羰基升高和晚期氧化蛋白产物升高)参数。标准品恢复了糖化和氧化标志物的BSA基线,而阿戈美拉汀有时甚至会使糖化水平高于BSA+糖化剂水平。阿戈美拉汀在BSA中的分子对接分析表明其结合亲和力非常弱。

讨论

阿戈美拉汀与BSA的亲和力非常低,这可能表明其结合不具有特异性,并且糖化因子的附着较为简单化。因此,正如系统评价所示,该药物可能会刺激大脑适应羰基/氧化应激。此外,该药物的活性代谢产物可能具有抗糖基化氧化作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8461/10166843/e4d0d3b9c27f/fpsyt-14-1164459-g0001.jpg

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