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pH-triggered injectable hydrogels prepared from aqueous N-palmitoyl chitosan: In vitro characteristics and in vivo biocompatibility
被引:166
作者:
Chiu, Ya-Ling
[1
]
Chen, Sung-Ching
[2
]
Su, Chun-Jen
[3
]
Hsiao, Chun-Wen
[1
]
Chen, Yu-Ming
[1
]
Chen, Hsin-Lung
[1
]
Sung, Hsing-Wen
[1
]
机构:
[1] Natl Tsing Hua Univ, Dept Chem Engn, Hsinchu 30013, Taiwan
[2] Ind Technol Res Inst, Biomed Engn Res Labs, Biomat Applicat Lab, Hsinchu, Taiwan
[3] NSRRC, Hsinchu, Taiwan
关键词:
pH-sensitive hydrogel;
N-Palmitoyl chitosan;
Viscoelastic property;
Biocompatibility;
GLASS-TRANSITION;
SYSTEMS;
SALT;
SCATTERING;
BEHAVIOR;
PEPTIDE;
POLYMER;
GELS;
D O I:
10.1016/j.biomaterials.2009.05.052
中图分类号:
R318 [生物医学工程];
学科分类号:
0831 ;
摘要:
In-situ forming hydrogels triggered by environmental stimuli have emerged as a promising injectable strategy targeted for various biomedical applications. However, several drawbacks associated with temperature-stimulated hydrogels have been reported. Employing a hydrophobically-modified chitosan (N-palmitoyl chitosan, NPCS), we developed a pH-triggered hydrogel system which showed a rapid nanostructure transformation within a narrow pH range (pH 6.5-7.0). NPCS in an aqueous environment was found to be a shear-thinning fluid and exhibited an instant recovery of its elastic properties after shear thinning, thereby making it an injectable material. Additionally, aqueous NPCS, an associating polyelectrolyte, can be rapidly transformed into hydrogel triggered simply by its environmental pH through a proper balance between charge repulsion and hydrophobic interaction. This in-situ hydrogel system was shown to be nontoxic. Subcutaneous injection of aqueous NPCS (pH 6.5) into a rat model resulted in rapid formation of a massive hydrogel at the location of injection. The implanted hydrogel was found to be degradable and was associated with an initial macrophage response which decreased with time as the degradation proceeded. These results suggested that the developed NPCS hydrogel may be used as an injectable drug/cell delivery system. (C) 2009 Elsevier Ltd. All rights reserved.
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页码:4877 / 4888
页数:12
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