Electrospun PHBV/collagen composite nanofibrous scaffolds for tissue engineering

被引:108
|
作者
Meng, Wan
Kim, Se-Yong
Yuan, Jiang
Kim, Jung Chul
Kwon, Oh Hyeong
Kawazoe, Naoki
Chen, Guoping
Ito, Yoshihiro
Kang, Inn-Kyu [1 ]
机构
[1] Kyungpook Natl Univ, Dept Polymer Sci, Taegu 702701, South Korea
[2] Yanbian Univ, Dept Chem Engn & Polymer Sci, Yanji 133002, Peoples R China
[3] Kyungpook Natl Univ, Dept Immunol, Taegu 702701, South Korea
[4] Kumoh Natl Inst Technol, Dept Polymer Sci & Engn, Gyeongbuk 730701, South Korea
[5] Natl Inst Mat Sci, Biomat Ctr, Tsukuba, Ibaraki 3050044, Japan
[6] Kanagawa Acad Sci & Technol, Regenerat Med Bioreactor Project, Kawasaki, Kanagawa 2130012, Japan
[7] RIKEN, Nano Med Engn Lab, Inst Phys & Chem Res, Wako, Saitama 3510198, Japan
关键词
electrospinning; nanofibrous scaffold; tissue engineering; collagen;
D O I
10.1163/156856207779146114
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Electrospinning has recently emerged as a leading technique for the formation of nanofibrous structures made of synthetic and natural extracellular matrix components. In this study, nanofibrous scaffolds were obtained by electrospinning a combination of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) and type-I collagen in 1,1,1,3,3,3-hexafluoro-2-isopropanol (HIFP). The resulting fibers ranged from 300 to 600 nm in diameter. Their surfaces were characterized by attenuated total reflection Fourier transform infrared spectroscopy, electron spectroscopy for chemical analysis and atomic force microscopy. The PHBV and collagen components of the PHBV/collagen nanofibrous scaffold were biodegraded by PHB depolymerase and a type-I collagenase aqueous solution, respectively. The cell culture experiments indicated that the PHBV/collagen nanofibrous scaffold accelerated the adhesion and growth of NIH3T3 cells more effectively than the PHBV nanofibrous scaffold, thus making the former a good scaffold for tissue engineering.
引用
收藏
页码:81 / 94
页数:14
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