Crosslinking of Electrospun Fibrous Gelatin Scaffolds for Apatite Mineralization

被引:15
|
作者
Zhao, Jin [1 ]
Zhao, Yuping [1 ]
Guan, Qianqian [1 ]
Tang, Gongwen [1 ]
Zhao, Yunhui [1 ]
Yuan, Xiaoyan [1 ]
Yao, Kangde [1 ,2 ]
机构
[1] Tianjin Univ, Sch Mat Sci & Engn, Tianjin Key Lab Composite & Funct Mat, Tianjin 300072, Peoples R China
[2] Tianjin Univ, Res Inst Polymer Mat, Tianjin 300072, Peoples R China
关键词
electrospinning; gelatin; fibrous scaffold; crosslinking; mineralization; apatite; ALTERNATE SOAKING PROCESS; SIMULATED BODY-FLUID; BIOMIMETIC MINERALIZATION; NANOFIBROUS SCAFFOLDS; IN-SITU; HYDROXYAPATITE; COLLAGEN; BIOMINERALIZATION; GROWTH; BONE;
D O I
10.1002/app.32769
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Fibrous gelatin scaffolds fabricated via electrospinning followed by crosslinking were used as substrates for apatite mineralization. Gelatin macromolecules were confined by their fibers and further restricted by the crosslinked structure while proper flexibility could be attained upon hydration. After 4 or 5 days of mineralization, partially carbonated hydroxyapatite was proved to deposit uniformly on the surface of the fibers. The property of the substrate, such as stiffness of the scaffolds and flexibility of macromolecules chain, was changed by different crosslinking ways. The influences of these properties on the formation of apatite were also investigated. Results showed that a relatively less rigid interface and more flexible chain acquired by glutaraldehyde solution crosslinking seemed to favor the nucleation of minerals and to reduce the size of the inorganic products. (C) 2010 Wiley Periodicals, Inc. J Appl Polym Sci 119: 786-793, 2011
引用
收藏
页码:786 / 793
页数:8
相关论文
共 50 条
  • [1] Crosslinking of the electrospun gelatin nanofibers
    Zhang, YZ
    Venugopal, J
    Huang, ZM
    Lim, CT
    Ramakrishna, S
    POLYMER, 2006, 47 (08) : 2911 - 2917
  • [2] Effect of inhomogeneity of the electrospun fibrous scaffolds of gelatin/polycaprolactone hybrid on cell proliferation
    Feng, Bei
    Duan, Huichuan
    Fu, Wei
    Cao, Yilin
    Zhang, Wen Jie
    Zhang, Yanzhong
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2015, 103 (02) : 431 - 438
  • [3] Electrospun PCL/Gelatin composite fibrous scaffolds: mechanical properties and cellular responses
    Yao, Ruijuan
    He, Jing
    Meng, Guolong
    Jiang, Bo
    Wu, Fang
    JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, 2016, 27 (09) : 824 - 838
  • [4] Electrospun macroporous fibrous scaffolds
    Fang, Jun
    Wang, Jing
    Wu, Tong
    Yin, Anlin
    Mo, Xiumei
    JOURNAL OF CONTROLLED RELEASE, 2015, 213 : E60 - E61
  • [5] Toughening in electrospun fibrous scaffolds
    Koh, C. T.
    Oyen, M. L.
    APL Materials, 2015, 3 (01):
  • [6] Crosslinking of Gelatin in Bicomponent Electrospun Fibers
    Dulnik, Judyta
    Sajkiewicz, Pawel
    MATERIALS, 2021, 14 (12)
  • [7] Crosslinking strategies for porous gelatin scaffolds
    Sandra Van Vlierberghe
    Journal of Materials Science, 2016, 51 : 4349 - 4357
  • [8] Crosslinking strategies for porous gelatin scaffolds
    Van Vlierberghe, Sandra
    JOURNAL OF MATERIALS SCIENCE, 2016, 51 (09) : 4349 - 4357
  • [9] Bio-inspired in situ crosslinking and mineralization of electrospun collagen scaffolds for bone tissue engineering
    Dhand, Chetna
    Ong, Seow Theng
    Dwivedi, Neeraj
    Diaz, Silvia Marrero
    Venugopal, Jayarama Reddy
    Navaneethan, Balchandar
    Fazil, Mobashar H. U. T.
    Liu, Shouping
    Seitz, Vera
    Wintermantel, Erich
    Beuerman, Roger W.
    Ramakrishna, Seeram
    Verma, Navin K.
    Lakshminarayanan, Rajamani
    BIOMATERIALS, 2016, 104 : 323 - 338
  • [10] Interaction of human fibroblasts with electrospun composites gelatin/PLLA, chitosan/PLLA and PLLA fibrous scaffolds
    Jian-bo Li
    Jun Han
    Jie Ren
    Li, J.-B., 1600, Shanghai Jiaotong University (17): : 559 - 566