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首页> 外文期刊>Chemical engineering journal >A hollow Cu9S8 theranostic nanoplatform based on a combination of increased active sites and photothermal performance in enhanced chemodynamic therapy
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A hollow Cu9S8 theranostic nanoplatform based on a combination of increased active sites and photothermal performance in enhanced chemodynamic therapy

机译:基于增加的活性位点和增强化学动力学治疗中的活性位点和光热性能的组合,一种中空CU9S8治疗纳米纳米

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A theranostic nanoplatform, combined with tumor imaging and therapy, especially a highly reactive multimodal synergistic treatment, can effectively improve the efficacy of treatment and reduce costs. Copper sulfide can be used as a theranostic nanoplatform due to its strong photoacoustic, photothermal, and Fenton-like catalytic performance. However, its Fenton-like catalytic performance is limited by the availability of surface reaction sites. A hollow Cu9S8 theranostic nanoplatform, with photoacoustic imaging and enhanced chemodynamic performance based on the combination of an increased number of active sites and photothermal performance was constructed in this study. The specific area of the hollow Cu9S8 nanoparticles was 1.7 times greater than that of solid Cu9S8 nanoparticle, which greatly increased the number of active sites where catalysis could occur in the Fenton reaction, thereby improving the chemodynamic therapy performance. In addition, the excellent photothermal properties of the Cu9S8 nanoparticles accelerated the generation of hydroxyl radicals (center dot OH), which also enhanced the chemodynamic therapy performance. More importantly, the in vivo experiment demonstrated that the hollow Cu9S8 theranostic nanoplatform exhibit good tumor photoacoustic imaging and enhanced chemodynamic therapy due to the combination of the increase in number of active sites and photothermal performance. Therefore, this work not only provides an excellent theranostic nanoplatform for tumor treatment, but also a new strategy for developing high performance chemodynamic agents.
机译:一种含有肿瘤成像和治疗的治疗纳米纳薄,特别是具有高反应性的多式联协同处理,可以有效地提高治疗的功效并降低成本。由于其强烈的光声,光热和芬顿催化性能,硫化铜可用作治疗纳米载体。然而,其芬顿催化性能受表面反应位点的可用性的限制。在本研究中,具有光声成像的中空Cu9S8载体纳米纳薄机,具有光声成像和增强的化学动力学性能和增强的活性位点和光热性能的组合。中空Cu9S8纳米颗粒的比面积大于固体Cu9S8纳米颗粒的1.7倍,这大大增加了催化剂在芬顿反应中可能发生的活性位点的数量,从而提高了化学动力学治疗性能。此外,Cu9S8纳米颗粒的优异光热性质加速了羟基自由基(中心点OH)的产生,这也增强了化学动力学治疗性能。更重要的是,体内实验表明,由于活性位点数和光热性能的增加,中空心Cu9S8治疗纳米纳薄成像表现出良好的肿瘤光声成像和增强的化学动力学治疗。因此,这项工作不仅为肿瘤治疗提供了优异的治疗纳米纳薄机,还提供了一种开发高性能化学动力学剂的新策略。

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