纳米载体
光热治疗
阿霉素
药物输送
生物相容性
多重耐药
二硫化钼
材料科学
癌细胞
基因传递
纳米技术
癌症研究
药理学
化学
遗传增强
癌症
医学
化疗
生物化学
基因
抗生素
内科学
冶金
作者
Li Guo,Fa‐Yan Meng,Taicheng Lu,Liying Wei,Xin Pan,Zhenzhen Nong,Mei Wei,Chuanan Liao,Xuehua Li
摘要
Abstract Objective Molybdenum disulfide (MoS2) has been developed for medical uses due to its excellent medically beneficial characteristics. This research was designed to develop a multifunctional nano-drug delivery system based on the nano-structure of MoS2 for combined chemo/gene/photothermal therapy targeting multidrug-resistant cancer. Methods MoS2 nanosheets were prepared by a hydrothermal reaction and modified. Afterward, the nanocarrier was characterised. In vitro cytotoxicity of the drug delivery systems on human breast adenocarcinoma cell lines was assessed. Key findings The nanocarrier was a flake-like structure with a uniform hydrodynamic diameter and possessing good colloidal stability. The nanocarrier showed the capacity to be deployed for co-delivery of Doxorubicin (DOX) and siRNA. The release of DOX could be triggered and enhanced by pH and application of near-infrared (NIR) laser. The nanocarrier had a good photothermic response and stability. The nanocarrier had little effect on the cells and exhibited good biocompatibility. Measurement of the therapeutic efficacy showed that synergistic therapy combining chemo-, gene- and photothermal therapy deploying this drug delivery system will achieve a better anticancer effect on drug-resistant cancer cells than DOX alone. Conclusions Our results suggest that this drug delivery system has potential application in the therapeutic strategy for drug-resistant cancer.
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