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富马酸二甲酯通过激活心肌细胞 Nrf2 通路减轻脂多糖诱导的线粒体损伤。

Dimethyl fumarate attenuates lipopolysaccharide-induced mitochondrial injury by activating Nrf2 pathway in cardiomyocytes.

机构信息

Department of Pathology and Pathophysiology, Zhejiang University School of Medicine, Hangzhou 310058, China.

Department of Pharmacology, Hangzhou Medical College, Hangzhou 310053, China.

出版信息

Life Sci. 2019 Oct 15;235:116863. doi: 10.1016/j.lfs.2019.116863. Epub 2019 Sep 9.

Abstract

AIMS

To determine whether dimethyl fumarate (DMF) can protect against lipopolysaccharide (LPS) -induced myocardial injury.

MAIN METHODS

H9c2 cells pretreated with or without DMF were stimulated with LPS. Cell viability and apoptosis were evaluated. Nrf2 and HO-1 expression were detected using Western blotting. Mitochondrial morphology, mitochondrial superoxide production were observed using confocal microscope. Mitochondrial respiration function was measured using Seahorse bioanalyzer.

KEY FINDINGS

(1) The cell viability decreased, LDH release and apoptosis increased in LPS- challenged H9c2 cells. DMF pretreatment brought a higher cell viability, and a lower LDH leakage and apoptosis than those of LPS group (P < 0.01). (2) DMF pretreatment resulted in an increased Nrf2 and HO-1 expression, and enhanced nuclear Nrf2 level in LPS-challenged cells (P < 0.01). (3) Nrf2-siRNA could inhibit DMF-induced enhancement of HO-1 expression and cell viability, and partly abolish DMF-induced reduction of LDH leakage and apoptosis. (4) ERK1/2 inhibitor PD98059 could not only prevent the DMF-induced enhancement of nuclear Nrf2 and HO-1, but also inhibit DMF-induced increase in cell viability. (5) Compared with LPS-challenged cells, DMF pretreatment caused a lower production of mitochondrial superoxide and a higher mitochondrial membrane potential, which could be abolished by Nrf2-siRNA. (6) DMF could attenuate LPS-induced mitochondrial fragmentation and improve mitochondrial respiration function by enhancement of the oxygen consumption rate of basal respiration and ATP production in LPS-challenged cells (P < 0.01).

SIGNIFICANCE

DMF protects cardiomyocytes against LPS-induced damage. ERK1/2-dependent activation of Nrf2/HO-1 pathway is responsible for DMF-induced cardioprotection via reduction of oxidative stress, improvement of mitochondrial morphology and energy metabolism.

摘要

目的

确定富马酸二甲酯(DMF)是否可以预防脂多糖(LPS)诱导的心肌损伤。

主要方法

用或不用 DMF 预处理 H9c2 细胞,然后用 LPS 刺激。评估细胞活力和凋亡。用 Western blot 检测 Nrf2 和 HO-1 的表达。用共聚焦显微镜观察线粒体形态和线粒体超氧化物的产生。使用 Seahorse 生物分析仪测量线粒体呼吸功能。

主要发现

(1)LPS 刺激的 H9c2 细胞活力下降,LDH 释放和凋亡增加。DMF 预处理可提高细胞活力,并降低 LPS 组的 LDH 漏出和凋亡(P<0.01)。(2)DMF 预处理可增加 LPS 刺激细胞中的 Nrf2 和 HO-1 表达,并增强核 Nrf2 水平(P<0.01)。(3)Nrf2-siRNA 可抑制 DMF 诱导的 HO-1 表达和细胞活力增强,并部分消除 DMF 诱导的 LDH 漏出和凋亡减少。(4)ERK1/2 抑制剂 PD98059 不仅可以防止 DMF 诱导的核 Nrf2 和 HO-1 的增强,还可以抑制 DMF 诱导的细胞活力增加。(5)与 LPS 刺激的细胞相比,DMF 预处理可降低线粒体超氧化物的产生并增加线粒体膜电位,而 Nrf2-siRNA 可消除这种作用。(6)DMF 可通过增强 LPS 刺激的细胞基础呼吸耗氧量和 ATP 产生来减轻 LPS 诱导的线粒体碎片化并改善线粒体呼吸功能(P<0.01)。

意义

DMF 可保护心肌细胞免受 LPS 诱导的损伤。ERK1/2 依赖性 Nrf2/HO-1 通路的激活通过减少氧化应激、改善线粒体形态和能量代谢,导致 DMF 诱导的心脏保护。

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