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TiO2-Nanowired cerebrolysin attenuated hyperthermia induced ubiquitin overexpression and brain pathology

机译:TiO2-纳米大脑敏素减毒热疗诱导泛素过表达和脑病理学

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Our military personnel are often engaged in combat operations in desert environments during summer months across the World. In such situations, apart from their exposure to missiles, roadside bomb or other explosive related nanoparticles exposure, they are also exposed to silica dust (SiO2) nanoparticles. Previous experiments from our laboratory showed that SiO2 exposure exacerbates heat stress induced brain pathology. Thus, this is likely that our soldiers that are exposed to SiO2 nanoparticles under heats tress are prone to central nervous system (CNS) dysfunction. Since ubiquitin is present in almost all cells and responsible for intracellular protein degradation, in present innovation we examined ubiquitin expression in heat stress and its modification with SiO2 nanoparticles in a rat model. Our observations show that SiO2 enhances ubiquitin overexpression in heat stress and that could be one of the key mechanisms responsible for brain pathology.
机译:我们的军事人员往往在世界各地的夏季在沙漠环境中从事战斗行动。 在这种情况下,除了暴露于导弹,路边炸弹或其他爆炸相关的纳米粒子暴露,它们也暴露于二氧化硅粉尘(SiO2)纳米颗粒。 我们实验室的先前实验表明,SiO2暴露会加剧热应激诱导的脑病。 因此,这可能是我们暴露于SiO2纳米颗粒的士兵在加热下的纳米颗粒上易于中枢神经系统(CNS)功能障碍。 由于泛素存在于几乎所有细胞中并负责细胞内蛋白质降解,因此在目前的创新中,我们在大鼠模型中检查了热应激中的泛素表达及其在大鼠模型中的SiO2纳米颗粒的改性。 我们的观察结果表明,SiO2增强了热应激中的泛素过度表达,并且可以是负责脑病理学的关键机制之一。

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