首页> 外文期刊>American Journal of Translational Research >Protective effects of exogenous NaHS against sepsis-induced myocardial mitochondrial injury by enhancing the PGC-1?±/NRF2 pathway and mitochondrial biosynthesis in mice
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Protective effects of exogenous NaHS against sepsis-induced myocardial mitochondrial injury by enhancing the PGC-1?±/NRF2 pathway and mitochondrial biosynthesis in mice

机译:外源NaHS通过增强PGC-1?/ NRF2途径和线粒体生物合成对败血症诱发的心肌线粒体损伤的保护作用

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This study aimed to examine whether exogenous NaHS can protect myocardial mitochondrial injury from sepsis by enhancing the peroxisome proliferator-activated receptor gamma co-activator 1α (PGC-1α)/ nuclear factor erythroid-2-related factor 2 (NRF2) pathway and mitochondrial biosynthesis in mice. Animals were divided into sham-operated, sepsis, sepsis + 25 μmol/L NaHS, sepsis + 50 μmol/L NaHS, sepsis + 100 μmol/L NaHS, and sepsis + 200 μmol/L NaHS groups. The myocardial damage was evaluated by hematoxylin and eosin staining for myocardial microstructure and serum cardiac troponin I (cTnI) detection. The myocardial mitochondrial damage was evaluated through transmission electron microscopic observation of mitochondrial microstructure and detection of the degree of myocardial mitochondrial swelling. The adenosine triphosphate (ATP) level was used to appraise the mitochondrial function. The mRNA expression levels of Nrf2, PGC-1α, and Tfam were analyzed to explore the molecular mechanism. Results: In the sepsis group, the structure of myocardial tissue and mitochondria were significantly damaged, the serum cTnI level increased (P < 0.05), the ATP level reduced, the degree of myocardial mitochondrial swelling aggravated, and the mRNA expression levels of Nrf2, PGC-1α, and Tfam increased (P < 0.05). After NaHS treatment, the structure of myocardial tissue and mitochondria improved, the cTnI level reduced, the ATP level increased, the degree of myocardial mitochondrial swelling alleviated, and the mRNA expression level of Nrf2, PGC-1α, and Tfam increased continuously in a dose-dependent manner (P < 0.05). Conclusions: Exogenous NaHS had a protective effect against myocardial mitochondrial injury in sepsis. The mechanism might lie in enhancing the PGC-1α/NRF2 pathway and mitochondrial biosynthesis.
机译:这项研究旨在检查外源性NaHS是否可通过增强过氧化物酶体增殖物激活受体γ辅激活物1α(PGC-1α)/核因子类红细胞2相关因子2(NRF2)途径和线粒体生物合成来保护心肌线粒体损伤免受败血症的侵害在小鼠中。将动物分为假手术,败血症,败血症+25μmol/ L NaHS,败血症+50μmol/ L NaHS,败血症+100μmol/ L NaHS和败血症+200μmol/ L NaHS组。通过苏木精和曙红染色评估心肌损伤,以检测心肌的微观结构和检测血清心肌肌钙蛋白I(cTnI)。通过透射电镜观察线粒体的微观结构和检测心肌线粒体的肿胀程度来评估心肌线粒体的损​​伤。三磷酸腺苷(ATP)水平用于评估线粒体功能。分析了Nrf2,PGC-1α和Tfam的mRNA表达水平,以探讨其分子机制。结果:败血症组心肌组织和线粒体结构明显受损,血清cTnI水平升高(P <0.05),ATP水平降低,心肌线粒体肿胀程度加重,Nrf2的mRNA表达水平升高。 PGC-1α和Tfam升高(P <0.05)。 NaHS处理后,心肌组织和线粒体结构改善,cTnI水平降低,ATP水平升高,心肌线粒体肿胀程度减轻,Nrf2,PGC-1α和Tfam的mRNA表达水平持续增加依赖方式(P <0.05)。结论:外源性NaHS对脓毒症心肌线粒体损伤具有保护作用。其机制可能在于增强PGC-1α/ NRF2途径和线粒体的生物合成。

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