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首页> 外文期刊>Nanoscale >CMCTS stabilized Fe3O4 particles with extremely low toxicity as highly efficient near-infrared photothermal agents for in vivo tumor ablation
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CMCTS stabilized Fe3O4 particles with extremely low toxicity as highly efficient near-infrared photothermal agents for in vivo tumor ablation

机译:氯乙酸稳定Fe3O4粒子以极作为高效的近红外低毒性光热光谱分析人员对体内肿瘤消融

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With the potential uses of photothermal therapy (PTT) in cancer treatment with excellent efficacy, and the growing concerns about the nanotoxicity of hyperthermia agents such as carbon nanotubes and gold-based nanomaterials, the importance of searching for a biocompatible hyperthermia agent cannot be emphasized too much. In this work, a novel promising hyperthermia agent employing magnetic Fe3O4 particles with fairly low toxicity was proposed. This hyperthermia agent showed rapid heat generation under NIR irradiation. After modification with carboxymethyl chitosan (CMCTS), the obtained Fe3O4@CMCTS particles could disperse stably in PBS and serum without any aggregation. The modification of CMCTS could decrease the adsorption of bovine serum albumin (BSA) and improve the cellular uptake. In a comparative study with hollow gold nanospheres (HAuNS), Fe3O4@CMCTS particles exhibited a comparable photothermal effect and fairly low cytotoxicity. The in vivo magnetic resonance (MR) images of mice revealed that by attaching a magnet to the tumor, Fe3O4@CMCTS particles accumulated in the tumor after intravenous injection and showed a low distribution in the liver. After being exposed to a 808 nm laser for 5 min at a low power density of 1.5 W cm~(-2), the tumors on Fe3O4@CMCTS-injected mice reached a temperature of ~52 °C and were completely destroyed. Thus, a kind of multifunctional magnetic nanoparticle with extremely low toxicity and a simple structure for simultaneous MR imaging, targeted drug delivery and photothermal therapy can be easily fabricated.
机译:光照疗法的潜在用途(PTT)与优秀的癌症治疗功效,日益增长的担忧nanotoxicity高热剂等在于,碳纳米管和纳米材料,寻找生物相容性的重要性高热剂不能被过分强调。在这项工作中,小说有前途的高热代理使用磁Fe3O4粒子提出了相当低的毒性。高热剂显示快速热的一代在近红外光谱辐照。羧甲基壳聚糖(氯),获得的Fe3O4@CMCTS粒子可以分散稳定PBS和血清没有任何聚合。修改:可以减少牛血清白蛋白(BSA)和吸附提高细胞吸收。研究了中空金团簇(胡安),Fe3O4@CMCTS粒子表现出类似光照效果和相当低的细胞毒性。体内磁共振(先生)的图像老鼠透露,通过附加一个磁铁肿瘤,Fe3O4@CMCTS积累的粒子肿瘤静脉注射后显示低分布在肝脏。暴露在低波长808纳米的激光为5分钟功率密度为1.5 W厘米~(2),肿瘤Fe3O4@CMCTS-injected老鼠达到一个温度~ 52°C和完全被烧毁。多功能磁性纳米颗粒极低的毒性和简单结构同时先生成像,目标药物输送和光照疗法容易编造的。

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