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首页> 外文期刊>ACS applied materials & interfaces >Carbon Nanoparticles-Fe(II) Complex for Efficient Tumor Inhibition with Low Toxicity by Amplifying Oxidative Stress
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Carbon Nanoparticles-Fe(II) Complex for Efficient Tumor Inhibition with Low Toxicity by Amplifying Oxidative Stress

机译:通过扩增氧化应激,碳纳米颗粒-Fe(ii)复合物用于高效肿瘤抑制,毒性低毒性

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摘要

The Fe element is essential for human beings, but overdose of Fe leads to unwanted toxicity. However, overwhelming Fe accumulation in tumor cells could arouse strong oxidative stress for cancer therapy. Therefore, the fast and specific accumulation of Fe in tumor cells without systemic toxicity is critical for this purpose. Herein, we report that a carbon nanoparticles-Fe(II) complex (CNSI-Fe) could efficiently load Fe into tumor cells and inhibit tumor growth with low toxicity in H22 tumor-bearing mice. Upon intratumoral injection, CNSI-Fe only induced meaningful Fe increase in the tumor to significantly inhibit tumor growth with competitive efficiency to cis-dichlorodiammineplatinum(II). Fe accumulation stimulated the hydroxyl radical generation and serious oxidative stress in the tumor. Due to the lack of Fe accumulation in other tissues, CNSI-Fe was of low systemic toxicity to tumor-bearing mice. With the clinical success of CNSI for decades, CNSI-Fe might be used for cancer therapy through "off label" use to benefit patients immediately.
机译:Fe元素对人类至关重要,但过量的Fe过量导致不必要的毒性。然而,肿瘤细胞中的压倒性Fe积累可能会引起癌症治疗的强氧化应激。因此,没有全身毒性的肿瘤细胞中的Fe的快速和特异性积累对于此目的至关重要。在此,我们报告说碳纳米颗粒-FE(II)复合物(CNSI-Fe)可以将Fe载入肿瘤细胞并抑制H22肿瘤小鼠的低毒性肿瘤生长。在肿瘤内注射后,CNSI-FE仅诱导肿瘤的有意义的Fe增加,以显着抑制患有竞争力的肿瘤生长与CIS-DOCHLORODIMMINEPLATINUM(II)。 Fe积累刺激肿瘤中的羟基自由基产生和严重的氧化应激。由于其他组织中缺乏Fe积累,CNSI-Fe对携带肿瘤小鼠的全身毒性低。随着CNSI的临床成功数十年来,CNSI-Fe可能会通过“OFF标签”用于癌症治疗,以便立即使用患者。

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