Preparation and characterization of chitosan-gelatin/nanohydroxyapatite composite scaffolds for tissue engineering applications

被引:280
|
作者
Peter, Mathew [1 ]
Ganesh, Nitya [1 ]
Selvamurugan, N. [1 ]
Nair, S. V. [1 ]
Furuike, T. [2 ,3 ]
Tamura, H. [2 ,3 ]
Jayakumar, R. [1 ]
机构
[1] Amrita Vishwa Vidyapeetham Univ, Amrita Ctr Nanosci & Mol Med, Amrita Inst Med Sci & Res Ctr, Kochi 682041, India
[2] Kansai Univ, Fac Chem Mat & Bioengn, Osaka 5648680, Japan
[3] Kansai Univ, High Technol Res Ctr, Osaka 5648680, Japan
关键词
Chitosan; Gelatin; Nanohydroxyapatite; Composite scaffold; Tissue engineering; CELL ATTACHMENT; HYDROXYAPATITE; TITANIUM; CHITIN; BONE; NANOTOPOGRAPHY; PROLIFERATION; ROUGHNESS; MEMBRANES; CARTILAGE;
D O I
10.1016/j.carbpol.2009.11.050
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Chitosan is a novel biocompatible, biodegradable polymer for potential use in tissue engineering. In this work, chitosan-gelatin/nanophase hydroxyapatite composite scaffolds were prepared by blending chitosan and gelatin with nanophase hydroxyapatite (nHA). The prepared nHA was characterized using TEM, XRD and FT-IR. The prepared composite scaffolds were characterized using SEM, FT-IR and XRD studies. The composite scaffolds were highly porous with a pore size of 150-300 mu m. In addition, density, swelling ratio, degradation, biomineralization, cytotoxicity and cell attachment of the composite scaffolds were studied. The scaffolds showed good swelling character, which could be modulated by varying ratio of chitosan and gelatin. Composite scaffolds in the presence of nHA showed a decreased degradation rate and increased mineralization in SBF. The biological response of MG-63 cells on nanocomposite scaffolds was superior in terms of improved cell attachment, higher proliferation, and spreading compared to chitosan-gelatin (CG) scaffold. (C) 2009 Elsevier Ltd. All rights reserved.
引用
收藏
页码:687 / 694
页数:8
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