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Mn(II) mediated degradation of artemisinin based on Fe3O4@MnSiO3-FA nanospheres for cancer therapy in vivo

机译:基于锰(II)介导的降解的青蒿素在Fe3O4@MnSiO3-FA团簇对癌症治疗体内

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摘要

Artemisinin (ART) is a natural drug with potent anticancer activities related with Fe2+ mediated cleavage of the endoperoxide bridge in ART. Herein, we reported that Mn2+ could substitute for Fe2+ to react with ART and generate toxic products, inducing a much higher anticancer efficiency. On this basis, we prepared pH-responsive Fe3O4@MnSiO3-FA nanospheres which can efficiently deliver hydrophobic ART into tumors in mice models. Mn2+ was released in acidic tumor environments and intracellular lysosomes, interacting with ART to kill cancer cells. The ART-loaded nanocarriers could suppress tumor growth more efficiently than free ART, which could be further illustrated by magnetic resonance imaging (MRI). Histological analysis revealed that the drug delivery system had no obvious effect on the major organs of mice. ART has been reported to have lower toxicity than chemotherapeutics. The ART-loaded nanocarriers are promising to be used in improving the survival of chemotherapy patients, providing a novel method for clinical tumor therapy.
机译:青蒿素(ART)是一种天然药物与强大抗癌活性与价介导有关乳沟内过氧化物桥的艺术。在此,我们报道了Mn2 +可以替代对价与艺术和反应生成有毒产品,导致更高的抗癌效率。pH-responsive Fe3O4@MnSiO3-FA团簇的可以有效地实现疏水艺术小鼠肿瘤模型。酸性环境和肿瘤细胞内溶酶体,与艺术互动杀死癌症细胞。肿瘤的生长比免费更有效的艺术,这可以进一步说明了磁磁共振成像(MRI)。没有显示药物输送系统明显影响小鼠的主要器官。据报道有毒性低于化学疗法。承诺用于改善吗生存的化疗病人,提供一个临床肿瘤治疗的新方法。

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