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用于增强癌症光热诊疗的锑掺杂氧化锡纳米晶体

Antimony-Doped Tin Oxide Nanocrystals for Enhanced Photothermal Theragnosis Therapy of Cancers.

作者信息

Lv Zhongjing, Li Jiafeng, Yang Feng, Cao Kun, Bao Qiang, Sun Yuhua, Yuan Jian

机构信息

Department of Stomatology, The Affiliated Hospital of Xuzhou Medical University, Xuzhou, China.

School of Stomatology, Xuzhou Medical University, Xuzhou, China.

出版信息

Front Bioeng Biotechnol. 2020 Jun 24;8:673. doi: 10.3389/fbioe.2020.00673. eCollection 2020.

Abstract

The doped semiconductor nanocrystal with free holes in valence band exhibits strong near-infrared (NIR) local surface plasmon resonance effects, which is essential for photothermal agents. Herein, the hydrophilic Sb doped SnO nanocrystals were successfully prepared by a simple hydrothermal synthesis method. The doping makes the Sb doped SnO nanocrystals possessing defect structures. Compared with the un-doped SnO nanocrystals, Sb doped SnO nanocrystals exhibit stronger absorption in the NIR region from 500 to 1,100 nm and higher photothermal conversion efficiency (up to 73.6%) which makes the synthesized Sb doped SnO nanocrystals be used as excellent photothermal agents. Importantly, Sb doped SnO nanocrystals can efficiently kill cancer cells both and under the irradiation of a 980 nm laser with a power density of 0.6 W cm. In addition, Sb doped SnO nanocrystals can also be served as efficient CT imaging agents owing to the large X-ray attenuation coefficient of tin.

摘要

价带中存在自由空穴的掺杂半导体纳米晶体表现出强烈的近红外(NIR)局域表面等离子体共振效应,这对于光热剂至关重要。在此,通过简单的水热合成方法成功制备了亲水性的锑掺杂二氧化锡纳米晶体。掺杂使得锑掺杂二氧化锡纳米晶体具有缺陷结构。与未掺杂的二氧化锡纳米晶体相比,锑掺杂二氧化锡纳米晶体在500至1100nm的近红外区域表现出更强的吸收以及更高的光热转换效率(高达73.6%),这使得合成的锑掺杂二氧化锡纳米晶体可作为优异的光热剂。重要的是,在功率密度为0.6W/cm的980nm激光照射下,锑掺杂二氧化锡纳米晶体在体内和体外均能有效杀死癌细胞。此外,由于锡的X射线衰减系数大,锑掺杂二氧化锡纳米晶体还可作为高效的CT成像剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c04/7358652/955aeab8cf0b/fbioe-08-00673-g001.jpg

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