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L-ergothioneine 在实验性 2 型糖尿病大鼠中的心脏保护作用及抗氧化机制。

Cardioprotective Effects and Antioxidant Mechanism of L-Ergothioneine in Experimental Type-2 Diabetic Rats.

机构信息

Discipline of Physiology, School of Laboratory Medicine and Medical Sciences, College of Health Sciences, University of KwaZulu-Natal, Westville Campus, Durban X54001, South Africa.

Department of Natural and Microbial Products, National Research Center, Dokki, Egypt.

出版信息

Cardiovasc Hematol Agents Med Chem. 2022;20(2):133-147. doi: 10.2174/1871525719666210809122541.

Abstract

BACKGROUND

Diabetic cardiotoxicity is commonly associated with oxidative injury, inflammation, and endothelial dysfunction. L-ergothioneine (L-egt), a diet-derived amino acid, has been reported to decrease mortality and risk of cardiovascular injury, provides cytoprotection to tissues exposed to oxidative damage, and prevents diabetes-induced perturbation.

OBJECTIVE

This study investigated the cardioprotective effects of L-egt on diabetes-induced cardiovascular injuries and its probable mechanism of action.

METHODS

Twenty-four male Sprague-Dawley rats were divided into non-diabetic (n = 6) and diabetic groups (n = 18). Six weeks after the induction of diabetes, the diabetic rats were divided into three groups (n = 6) and administered distilled water, L-egt (35mg/kg), and losartan (20mg/kg) by oral gavage for six weeks. Blood glucose and mean arterial pressure (MAP) were recorded pre-and post-treatment, while biochemical, ELISA, and RT-qPCR analyses were conducted to determine inflammatory, injury-related and antioxidant biomarkers in cardiac tissue after euthanasia. Also, an in-silico study, including docking and molecular dynamic simulations of L-egt toward the Keap1- Nrf2 protein complex, was done to provide a basis for the molecular antioxidant mechanism of Legt.

RESULTS

Administration of L-egt to diabetic animals reduced serum triglyceride, water intake, MAP, biomarkers of cardiac injury (CK-MB, CRP), lipid peroxidation, and inflammation. Also, Legt increased body weight, antioxidant enzymes, upregulated Nrf2, HO-1, NQO1 expression, and decreased Keap1 expression. The in-silico study showed that L-egt inhibits the Keap1-Nrf2 complex by binding to the active site of Nrf2 protein, thereby preventing its degradation.

CONCLUSION

L-egt protects against diabetes-induced cardiovascular injury via the upregulation of the Keap1-Nrf2 pathway and its downstream cytoprotective antioxidants.

摘要

背景

糖尿病性心脏毒性通常与氧化损伤、炎症和内皮功能障碍有关。L-麦硫因(L-egt)是一种饮食衍生的氨基酸,已被报道可降低死亡率和心血管损伤风险,为暴露于氧化损伤的组织提供细胞保护,并预防糖尿病引起的紊乱。

目的

本研究旨在探讨 L-egt 对糖尿病引起的心血管损伤的保护作用及其可能的作用机制。

方法

将 24 只雄性 Sprague-Dawley 大鼠分为非糖尿病组(n = 6)和糖尿病组(n = 18)。糖尿病诱导 6 周后,将糖尿病大鼠分为三组(n = 6),分别给予蒸馏水、L-egt(35mg/kg)和氯沙坦(20mg/kg)灌胃 6 周。记录治疗前后的血糖和平均动脉压(MAP),安乐死后通过生化、ELISA 和 RT-qPCR 分析测定心脏组织中炎症、损伤相关和抗氧化生物标志物。此外,还进行了一项基于分子对接和分子动力学模拟的 L-egt 与 Keap1-Nrf2 蛋白复合物的计算机模拟研究,为 L-egt 的分子抗氧化机制提供了依据。

结果

给予糖尿病动物 L-egt 可降低血清甘油三酯、饮水量、MAP、心肌损伤标志物(CK-MB、CRP)、脂质过氧化和炎症。此外,L-egt 还增加了体重、抗氧化酶、上调了 Nrf2、HO-1、NQO1 的表达,并降低了 Keap1 的表达。计算机模拟研究表明,L-egt 通过与 Nrf2 蛋白的活性位点结合抑制 Keap1-Nrf2 复合物,从而防止其降解。

结论

L-egt 通过上调 Keap1-Nrf2 通路及其下游细胞保护抗氧化剂来保护糖尿病引起的心血管损伤。

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