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拓扑绝缘体硒化铋作为一种用于癌症成像和治疗的同时治疗的平台。

Topological insulator bismuth selenide as a theranostic platform for simultaneous cancer imaging and therapy.

机构信息

The Key Laboratory of Analysis and Detection Technology for Food Safety of the MOE, College of Chemistry and Chemical Engineering, Fuzhou University, Fuzhou 350002, P R China.

出版信息

Sci Rep. 2013;3:1998. doi: 10.1038/srep01998.

Abstract

Employing theranostic nanoparticles, which combine both therapeutic and diagnostic capabilities in one dose, has promise to propel the biomedical field toward personalized medicine. Here we investigate the theranostic properties of topological insulator bismuth selenide (Bi2Se3) in in vivo and in vitro system for the first time. We show that Bi2Se3 nanoplates can absorb near-infrared (NIR) laser light and effectively convert laser energy into heat. Such photothermal conversion property may be due to the unique physical properties of topological insulators. Furthermore, localized and irreversible photothermal ablation of tumors in the mouse model is successfully achieved by using Bi2Se3 nanoplates and NIR laser irradiation. In addition, we also demonstrate that Bi2Se3 nanoplates exhibit strong X-ray attenuation and can be utilized for enhanced X-ray computed tomography imaging of tumor tissue in vivo. This study highlights Bi2Se3 nanoplates could serve as a promising platform for cancer diagnosis and therapy.

摘要

首次在体内和体外系统中研究了拓扑绝缘体碲化铋(Bi2Se3)的治疗和诊断性能。我们发现 Bi2Se3 纳米板可以吸收近红外(NIR)激光,并有效地将激光能量转化为热能。这种光热转换特性可能归因于拓扑绝缘体的独特物理性质。此外,通过使用 Bi2Se3 纳米板和 NIR 激光照射,成功地实现了小鼠模型中肿瘤的局部和不可逆光热消融。此外,我们还证明 Bi2Se3 纳米板具有很强的 X 射线衰减能力,可用于增强肿瘤组织的体内 X 射线计算机断层成像。这项研究强调了 Bi2Se3 纳米板可能成为癌症诊断和治疗的有前途的平台。

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