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Growth Arrest-Specific Gene 6 Administration Ameliorates Sepsis-Induced Organ Damage in Mice and Reduces ROS Formation In Vitro

机译:生长抑制特异性基因6给药改善了败血症诱导的小鼠器官损伤并减少了体外的ROS形成

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摘要

Sepsis is a widespread life-threatening disease, with a high mortality rate due to inflammation-induced multiorgan failure (MOF). Thus, new effective modulators of the immune response are urgently needed to ameliorate the outcome of septic patients. As growth arrest-specific gene 6 (Gas6)/Tyro3, Axl, MerTK (TAM) receptors signaling has shown immunomodulatory activity in sepsis, here we sought to determine whether Gas6 protein injection could mitigate MOF in a cecal slurry mouse model of sepsis. Mice, divided into different groups according to treatment—i.e., placebo (B), ampicillin (BA), Gas6 alone (BG), and ampicillin plus Gas6 (BAG)—were assessed for vitality, histopathology and cytokine expression profile as well as inducible nitric oxide synthase (iNOS), ALT and LDH levels. BAG-treated mice displayed milder kidney and lung damage and reduced levels of cytokine expression and iNOS in the lungs compared to BA-treated mice. Notably, BAG-treated mice showed lower LDH levels compared to controls. Lastly, BAG-treated cells of dendritic, endothelial or monocytic origin displayed reduced ROS formation and increased cell viability, with a marked upregulation of mitochondrial activity. Altogether, our findings indicate that combined treatment with Gas6 and antibiotics ameliorates sepsis-induced organ damage and reduces systemic LDH levels in mice, suggesting that Gas6 intravenous injection may be a viable therapeutic option in sepsis.
机译:脓毒症是一种普遍的危及生命的疾病,由于炎症诱导的多/莫氏多功能衰竭(MOF),具有高死亡率。因此,迫切需要进行免疫应答的新有效调节剂以改善脓毒症患者的结果。作为生长逮捕特异性基因6(Gas6)/ Tyro3,AXL,Mertk(TAM)受体信号传导在败血症中显示出免疫调节活性,在这里我们寻求确定Gas0蛋白注射是否可以在肠浆料的肠浆浆体模型中减轻MOF。小鼠,分为根据治疗的不同组 - 即安慰剂(b),氨苄青霉素(Ba),单独的(Bg),氨苄青霉素加气体6(袋) - 评估生命力,组织病理学和细胞因子表达谱以及诱导一氧化氮合酶(Inos),ALT和LDH水平。与BA处理的小鼠相比,袋子处理的小鼠在肺部呈现较温和的肾脏和肺部损伤以及降低细胞因子表达和in的inos水平。值得注意的是,与对照相比,袋子处理的小鼠显示出较低的LDH水平。最后,树枝状,内皮或单核细胞来源的袋处理细胞显示出降低的ROS形成和增加的细胞活力,具有显着的线粒体活性的上调。我们的研究结果表明,使用Gas6和抗生素的组合治疗改善了败血症诱导的器官损伤并降低了小鼠的全身LDH水平,表明Gas6静脉注射可能是败血症中可行的治疗选择。

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