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TSPO 配体 4'-氯地西泮的心脏保护作用与再灌注时抑制胆固醇在线粒体中的积累有关。

Cardioprotection by the TSPO ligand 4'-chlorodiazepam is associated with inhibition of mitochondrial accumulation of cholesterol at reperfusion.

机构信息

INSERM, U955, Equipe 3, 8 rue du Général Sarrail, Créteil Cedex 94000, France.

出版信息

Cardiovasc Res. 2013 Jun 1;98(3):420-7. doi: 10.1093/cvr/cvt079. Epub 2013 Apr 3.

Abstract

AIMS

The translocator protein (TSPO) is located on the outer mitochondrial membrane where it is responsible for the uptake of cholesterol into mitochondria of steroidogenic organs. TSPO is also present in the heart where its role remains uncertain. We recently showed that TSPO ligands reduced infarct size and improved mitochondrial functions after ischaemia-reperfusion. This study, thus, sought to determine whether cholesterol could play a role in the cardioprotective effect of TSPO ligands.

METHODS AND RESULTS

In a model of 30 min coronary occlusion/15 min reperfusion in Wistar rat, we showed that reperfusion induced lipid peroxidation as demonstrated by the increase in conjugated diene and thiobarbituric acid reactive substance formation and altered mitochondrial function (decrease in oxidative phosphorylation and increase in the sensitivity of mitochondrial permeability transition pore opening) in ex-vivo isolated mitochondria. This was associated with an increase in mitochondrial cholesterol uptake (89.5 ± 12.2 vs. 39.9 ± 3.51 nmol/mg protein in controls, P < 0.01) and a subsequent strong generation of auto-oxidized oxysterols, i.e. 7α- and 7β-hydroxycholesterol, 7-ketocholesterol, cholesterol-5α,6α-epoxide, and 5β,6β-epoxide (+173, +149, +165, +165, and +193% vs. controls, respectively; P < 0.01). Administration of the selective TSPO ligand 4'-chlorodiazepam inhibited oxidative stress, improved mitochondrial function, and abolished both mitochondrial cholesterol accumulation and oxysterol production. This was also observed with the new TSPO ligand TRO40303.

CONCLUSION

These data suggest that 4'-chlorodiazepam inhibits oxidative stress and oxysterol formation by reducing the accumulation of cholesterol in the mitochondrial matrix at reperfusion and prevents mitochondrial injury. This new and original mechanism may contribute to the cardioprotective properties of TSPO ligands.

摘要

目的

转位蛋白(TSPO)位于线粒体外膜上,负责将胆固醇摄取到类固醇生成器官的线粒体中。TSPO 也存在于心脏中,但其作用尚不清楚。我们最近表明,TSPO 配体在缺血再灌注后可减少梗死面积并改善线粒体功能。因此,本研究旨在确定胆固醇是否在 TSPO 配体的心脏保护作用中发挥作用。

方法和结果

在 Wistar 大鼠 30 分钟冠状动脉闭塞/15 分钟再灌注模型中,我们发现再灌注诱导脂质过氧化,表现为共轭二烯和硫代巴比妥酸反应物质形成增加,以及线粒体功能改变(氧化磷酸化减少和线粒体通透性转换孔开放的敏感性增加)在离体分离的线粒体中。这与线粒体胆固醇摄取增加(89.5±12.2 与对照组的 39.9±3.51 nmol/mg 蛋白相比,P<0.01)和随后大量生成自动氧化的氧化固醇(即 7α-和 7β-羟胆固醇、7-酮胆固醇、胆固醇-5α,6α-环氧化物和 5β,6β-环氧化物分别增加 173%、149%、165%、165%和 193%;与对照组相比,P<0.01)有关。选择性 TSPO 配体 4'-氯地西泮的给药抑制氧化应激,改善线粒体功能,并消除线粒体胆固醇积累和氧化固醇产生。新的 TSPO 配体 TRO40303 也观察到了这种情况。

结论

这些数据表明,4'-氯地西泮通过减少再灌注时线粒体基质中胆固醇的积累来抑制氧化应激和氧化固醇的形成,并防止线粒体损伤。这种新的和原始的机制可能有助于 TSPO 配体的心脏保护特性。

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