纳米载体
乙二醇
化学
还原胺化
纳米颗粒
药物输送
PEG比率
共聚物
核化学
阿霉素
结合
毒品携带者
高分子化学
共轭体系
组合化学
聚合物
材料科学
有机化学
纳米技术
医学
数学分析
外科
数学
财务
化疗
经济
催化作用
作者
Minghui Xu,Junmin Qian,Aili Suo,Hongjie Wang,Xueqing Yong,Xuefeng Liu,Rongrong Liu
标识
DOI:10.1016/j.carbpol.2013.05.077
摘要
To minimize the side effect of chemotherapy, a novel reduction/pH dual-sensitive drug nanocarrier, based on PEGylated dithiodipropionate dihydrazide (TPH)-modified hyaluronic acid (PEG-SS-HA copolymer), was developed for targeted delivery of doxorubicin (DOX) to hepatocellular carcinoma. The copolymer was synthesized by reductive amination via Schiff's base formation between TPH-modified HA and galactosamine-conjugated poly(ethylene glycol) aldehyde/methoxy poly(ethylene glycol) aldehyde. Conjugation of DOX to PEG-SS-HA copolymer was accomplished through the hydrazone linkage formed between DOX and PEG-SS-HA, and confirmed by FTIR and 1H NMR spectra. The polymer–DOX conjugate could self-assemble into spherical nanoparticles (∼150 nm), as indicated by TEM and DLS. In vitro release studies showed that the DOX-loaded nanoparticles could release DOX rapidly under the intracellular levels of pH and glutathiose. Cellular uptake experiments demonstrated that the nanoparticles could be efficiently internalized by HepG2 cells. These results indicate that the PEG-SS-HA copolymer holds great potential for targeted intracellular delivery of DOX.
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