纳米载体
PEG比率
阿霉素
聚乙二醇
药物输送
细胞毒性
化学
生物物理学
纳米技术
聚乙二醇化
材料科学
组合化学
生物化学
化疗
体外
医学
生物
外科
经济
财务
作者
Li Liu,Hongli Jiang,Jian Dong,Wenxian Zhang,Guangyao Dang,Mingfeng Yang,Yanyan Li,Jie Chen,Haiwei Ji,Lifeng Dong
标识
DOI:10.1016/j.colsurfb.2019.110590
摘要
Since low pH value is widely observed in most of solid tumors, pH-responsive drug delivery system (DDS) can provide a general strategy for tumor-targeting therapy. In this work, a traceable and pH-responsive DDS (MoS2-PEG-DOX) based on MoS2 quantum dots (MoS2 QDs) is successfully developed by covalently grafting MoS2 QDs with diamine-terminated oligomeric polyethylene glycol (PEG) and then loading with a fluorescent antineoplastic anthracycline drug, doxorubicin (DOX). The functionalization of MoS2 QDs with PEG imparts the nanocomposite with strong blue photoluminescence, low cytotoxicity, and excellent physiological stability. The MoS2-PEG-DOX nano-assembly can be effectively taken up by U251 cells, and an accelerated DOX release is then triggered by intracellular acid condition, which in turn diminishing unwanted side effects derived by the incorporation of DOX into healthy cells. Meanwhile, the cellular uptake of the MoS2-PEG-DOX nano-assembly, consequent DOX release and the localization of nanocarrier can be real-time monitored due to the inherent stable fluorescence of MoS2-PEG and DOX. These findings demonstrate that MoS2-PEG-DOX will be promising for high treatment efficacy with minimal side effects in future therapy.
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