Galactose-functionalized multi-responsive nanogels for hepatoma-targeted drug delivery

被引:61
|
作者
Lou, Shaofeng [1 ]
Gao, Shan [1 ]
Wang, Weiwei [1 ]
Zhang, Mingming [1 ]
Zhang, Ju [2 ]
Wang, Chun [1 ,3 ]
Li, Chen [1 ]
Kong, Deling [1 ,2 ]
Zhao, Qiang [2 ]
机构
[1] Chinese Acad Med Sci, Inst Biomed Engn, Tianjin Key Lab Biomat Res, Tianjin 300192, Peoples R China
[2] Nankai Univ, State Key Lab Med Chem Biol, Key Lab Bioact Mat, Minist Educ,Coll Life Sci, Tianjin 300071, Peoples R China
[3] Univ Minnesota, Dept Biomed Engn, Minneapolis, MN 55455 USA
基金
中国国家自然科学基金;
关键词
POLYMERIC NANOPARTICLES; RADICAL POLYMERIZATION; CONTROLLED-RELEASE; PHASE-TRANSITION; PH; MICELLES; NANOCARRIERS; MICROGEL; CARRIERS; DOXORUBICIN;
D O I
10.1039/c4nr06714b
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We report here a hepatoma-targeting multi-responsive biodegradable crosslinked nanogel, poly(6-O-vinyladipoyl-D-galactose-ss-N-vinylcaprolactam-ss-methacrylic acid) P(ODGal-VCL-MAA), using a combination of enzymatic transesterification and emulsion copolymerization for intracellular drug delivery. The nanogel exhibited redox, pH and temperature-responsive properties, which can be adjusted by varying the monomer feeding ratio. Furthermore, the volume phase transition temperature (VPTT) of the nanogels was close to body temperature and can result in rapid thermal gelation at 37 degrees C. Scanning electron microscopy also revealed that the P(ODGal-VCL-MAA) nanogel showed uniform spherical monodispersion. With pyrene as a probe, the fluorescence excitation spectra demonstrated nanogel degradation in response to glutathione (GSH). X-ray diffraction (XRD) showed an amorphous property of DOX within the nanogel, which was used in this study as a model anti-cancer drug. Drug-releasing characteristics of the nanogel were examined in vitro. The results showed multi-responsiveness of DOX release by the variation of environmental pH values, temperature or the availability of GSH, a biological reductase. An in vitro cytotoxicity assay showed a higher anti-tumor activity of the galactose-functionalized DOX-loaded nanogels against human hepatoma HepG2 cells, which was, at least in part, due to specific binding between the galactose segments and the asialoglycoprotein receptors (ASGP-Rs) in hepatic cells. Confocal laser scanning microscopy (CLSM) and flow cytometric profiles further confirmed elevated cellular uptake of DOX by the galactose-functionalised nanogels. Thus, we report here a multi-responsive P(ODGal-VCL-MAA) nanogel with a hepatoma-specific targeting ability for anti-cancer drug delivery.
引用
收藏
页码:3137 / 3146
页数:10
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