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首页> 外文期刊>Archives of Toxicology >ERK pathway is activated in bare-FeNPs-induced autophagy
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ERK pathway is activated in bare-FeNPs-induced autophagy

机译:ERK途径在裸FeNPs诱导的自噬中被激活

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Iron oxide nanoparticles (FeNPs) are known to be one of the most biocompatible and safe nanoparticles. However, their long-term persistence remains a problem, and macrophages play as an important mediator in continuous stimulation of the immune system due to biopersistence of nanoparticles. In the present study, we identified the mechanisms underlying the uptake and toxicity of bare-FeNPs using RAW264.7 cells, a mouse peritoneal macrophage cell line. The bare-FeNPs penetrated the cell membrane through electrostatic interactions together with the general phagocytic pathway. At 24 h after exposure, they distributed freely in the cytosol or within autophagosome-like vacuoles. Bare-FeNPs induced decrease in the cell viability along with the cell cycle arrest in G1 phase. In addition, they increased the generation of ROS and the secretion of NO and TNF alpha as well as the expression of SOD-1 and SOD-2 proteins, which are an antioxidant. While the mitochondrial calcium level, the intensity of labeled mitochondria, and ATP production decreased, the levels of autophagy-related proteins such as p62, beclin 1, ATG5, and LC3B increased in a dose-dependent manner together with the levels of ATF 3, p-EGFR, and p-ERK proteins. However, the level of p-JNK protein clearly decreased. TEM images also showed that damaged organelle exist within autophagosome-like vacuoles with bare-FeNPs. On the basis of these results, we suggest that bare-FeNPs induce autophagy by initiating oxidative stress in RAW264.7 cells. Furthermore, ERK, but not JNK, pathway is activated in bare-FeNPs-induced autophagy.
机译:已知氧化铁纳米颗粒(FeNPs)是生物相容性最高,最安全的纳米颗粒之一。然而,它们的长期持久性仍然是一个问题,由于纳米颗粒的生物持久性,巨噬细胞在持续刺激免疫系统中起着重要的调节剂的作用。在本研究中,我们使用小鼠腹膜巨噬细胞系RAW264.7细胞确定了裸FeNPs摄取和毒性的潜在机制。裸FeNPs通过静电相互作用与一般的吞噬途径一起穿透细胞膜。暴露后24小时,它们自由地分布在细胞质中或自噬样液泡中。 Bare-FeNPs诱导细胞活力下降,同时细胞周期停滞在G1期。另外,它们增加了ROS的产生以及NO和TNFα的分泌以及抗氧化剂SOD-1和SOD-2蛋白的表达。虽然线粒体钙水平,标记的线粒体强度和ATP产生降低,但自噬相关蛋白(例如p62,beclin 1,ATG5和LC3B)的水平以剂量依赖性方式增加,而ATF 3, p-EGFR和p-ERK蛋白。但是,p-JNK蛋白的水平明显下降。 TEM图像还显示受损的细胞器存在于具有裸露FeNP的自噬体状液泡中。根据这些结果,我们建议裸FeNP通过在RAW264.7细胞中启动氧化应激来诱导自噬。此外,在裸FeNPs诱导的自噬中激活了ERK而不是JNK途径。

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