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Layered MoS2 Hollow Spheres for Highly-Efficient Photothermal Therapy of Rabbit Liver Orthotopic Transplantation Tumors

机译:MoS2空心层状球体用于兔肝原位移植肿瘤的高效光热疗法

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摘要

Combining photothermal therapy (PTT) with clinical technology to kill cancer via overcoming the low tumor targeting and poor therapy efficiency has great potential in basic and clinical researches. A brand-new MoS2 nanostructure is designed and fabricated, i.e., layered MoS2 hollow spheres (LMHSs) with strong absorption in near-infrared region (NIR) and high photothermal conversion efficiency via a simple and fast chemical aerosol flow method. Owing to curving layered hollow spherical structure, the as-prepared LMHSs exhibit unique electronic properties comparing with MoS2 nanosheets. In vitro and in vivo studies demonstrate their high photothermal ablation of cell and tumor elimination rate by single NIR light irradiation. Systematic acute toxicity study indicates that these LMHSs have negligible toxic effects to normal tissues and blood. Remarkably, minimally invasive interventional techniques are introduced to improve tumor targeting of PTT agents for the first time. To explore PTT efficiency on orthotopic transplantation tumors, New Zealand white rabbits with VX2 tumor in liver are used as animal models. The effective elimination of tumors is successfully realized by PTT under the guidance of digital subtraction angiography, computed tomography, and thermal imaging, which provides a new way for tumor-targeting delivery and cancer theranostic application.
机译:将光热疗法(PTT)与临床技术相结合,以克服肿瘤靶向性低和治疗效率差的特点来杀死癌症,在基础和临床研究中具有巨大的潜力。设计和制造了全新的MoS2纳米结构,即通过简单快速的化学气溶胶流动方法在近红外区(NIR)具有强吸收性和高光热转换效率的层状MoS2中空球(LMHS)。由于弯曲的层状空心球形结构,所制备的LMHS与MoS2纳米片相比具有独特的电子性能。体外和体内研究表明,它们通过单NIR光照射具有很高的光热消融细胞能力和肿瘤消除率。系统的急性毒性研究表明,这些LMHS对正常组织和血液的毒性作用可忽略不计。值得注意的是,首次引入了微创介入技术来改善PTT药物的肿瘤靶向性。为了探索PTT对原位移植肿瘤的有效性,将新西兰白兔肝脏中带有VX2肿瘤的动物作为动物模型。 PTT在数字减影血管造影,计算机断层扫描和热成像的指导下成功实现了肿瘤的有效消除,这为肿瘤靶向递送和癌症治疗学应用提供了新途径。

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