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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Phosphonomethyl iminodiacetic acid-conjugated cobalt oxide nanoparticles liberate Co++ ion-induced stress associated activation of TNF-alpha/p38 MAPK/caspase 8-caspase 3 signaling in human leukemia cells
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Phosphonomethyl iminodiacetic acid-conjugated cobalt oxide nanoparticles liberate Co++ ion-induced stress associated activation of TNF-alpha/p38 MAPK/caspase 8-caspase 3 signaling in human leukemia cells

机译:膦甲基亚氨基二乙酸共轭氧化钴纳米颗粒释放人白血病细胞中Co ++离子诱导的应激相关的TNF-α/ p38 MAPK / caspase 8-caspase 3信号传导激活

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The aim of this work is to understand the potential health effects of metal nanoparticles by exposing human leukemic cell lines (jurkat, K562 and KG1A cells) to nanosize phosphonomethyl iminodiacetic acid coated cobalt oxide (PMIDA-CoO) NPs. The synthesized PMIDA-CoO NPs were characterized by XRD, dynamic light scattering, transmission electron microscopy and scanning electron microscopy. Our results showed that exposure of leukemic cell lines to PMIDA-CoO NPs caused reactive oxygen species (ROS) generation by increasing the concentration of free Co++ ions in cancer microenvironment. But at physiological pH, PMIDA-CoO liberates little amount of Co++ ions into media and exerts lower toxicity to normal cells up to a certain dose. PMIDA-CoO NPs caused DNA damage in leukemic cell lines, which was reflected by an increase in apoptosis of jurkat, KG-1A and K562 cells. PMIDA-CoO NPs induced apoptosis by increasing pro-inflammatory cytokines, primarily TNF-alpha. The in vivo study shows that PMIDA-CoO NPs were efficiently killed DLA cells. These findings have important implications for understanding the potential anticancer property induced by surface-modified cobalt oxide nanoparticles.
机译:这项工作的目的是通过将人类白血病细胞系(jurkat,K562和KG1A细胞)暴露于纳米级膦酰基甲基亚氨基二乙酸钴氧化物(PMIDA-CoO)NP中来了解金属纳米颗粒的潜在健康影响。通过XRD,动态光散射,透射电子显微镜和扫描电子显微镜对合成的PMIDA-CoO NPs进行了表征。我们的结果表明,白血病细胞系暴露于PMIDA-CoO NPs通过增加癌症微环境中游离Co ++离子的浓度而导致活性氧(ROS)生成。但是在生理pH值下,PMIDA-CoO释放很少量的Co ++离子进入培养基,并在一定剂量下对正常细胞产生较低的毒性。 PMIDA-CoO NPs在白血病细胞系中引起DNA损伤,这可通过jurkat,KG-1A和K562细胞凋亡的增加来反映。 PMIDA-CoO NPs通过增加促炎性细胞因子(主要是TNF-α)诱导凋亡。体内研究表明,PMIDA-CoO NP可有效杀死DLA细胞。这些发现对于理解由表面改性的氧化钴纳米颗粒诱导的潜在抗癌性能具有重要意义。

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