Fabrication of recombinant human bone morphogenetic protein-2 coated porous biphasic calcium phosphate-sodium carboxymethylcellulose-gelatin scaffold and its In vitro evaluation

被引:8
|
作者
Sarker, Avik [1 ]
Nguyen Thuy Ba Linh [1 ,2 ]
Jung, Hae Il [3 ]
Seo, Hyun Seok [4 ]
Lee, Byong Taek [1 ,2 ]
机构
[1] Soonchunhyang Univ, Coll Med, Dept Regenerat Med, Chungnam 330090, South Korea
[2] Soonchunhyang Univ, Coll Med, Inst Tissue Regenerat, Chungnam 330090, South Korea
[3] Soonchunhyang Univ Cheonan Hosp, Dept Surg, Chungnam 330721, South Korea
[4] Konyang Univ, Dept Exercise Prescript, Non San City 320711, Chungnam, South Korea
关键词
sodium carboxymethyl cellulose; gelatin; BCP; bone morphogenetic protein-2; porous structure; biocompatibility; HYDROXYAPATITE; HYDROGELS; BIOCOMPATIBILITY; MICROSTRUCTURE; MICROSPHERES; BIOMATERIALS; COMPOSITES; ADSORPTION; PARTICLES; CHITOSAN;
D O I
10.1007/s13233-014-2185-8
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Fabrication of bone substitutes, which are a combination of bio-ceramics and bio-polymer, is performed to meet the demand for bone regeneration after fracture or disease. In this study, sodium carboxymethylcellulosegelatin (NaCMC-GEL) hydrogel scaffold where the ratio of NaCMC and GEL was 1:2 and biphasic calcium phosphate (BCP) loaded NaCMC-GEL where the ratio of BCP, NaCMC and GEL was 1:1:2 hydrogel scaffold were fabricated successfully by the freeze-drying method. These hydrogel scaffolds were crosslinked by 0.75wt% genipin solution to check the swelling and ensure optimum degradation. Then BCP-NaCMC-GEL hydrogel was coated with recombinant human bone morphogenetic protein-2 (rhBMP-2). Detailed morphological and material characterization, such as porosity, micro-structural analysis, and chemical constituents of NaCMC-GEL and BCP-NaCMC-GEL hydrogel scaffolds was carried out. The study demonstrates that these hydrogel scaffolds have a porous structure and the pore size is optimum for bone tissue regeneration. PBS uptake and degradation behavior of the NaCMC-GEL, BCP-NaCMC-GEL and BMP-2-BCP-NaCMC-GEL hydrogel scaffolds were also observed. BMP-2-BCP-NaCMCGEL hydrogel scaffold showed higher cell viability, cell attachment, and proliferation of pre-osteoblast MC3T3-E1 cells than the NaCMC-GEL, BCP-NaCMC-GEL scaffolds, which was confirmed by 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide (MTT) assay, live-dead assay, and immunofluorescence assay. The BMP-2 release profile from BMP-2-BCP-NaCMC-GEL scaffold was also shown. The observations show that BMP-2-coated BCPNaCMC-GEL hydrogel scaffold is a promising material for bone tissue regeneration.
引用
收藏
页码:1297 / 1305
页数:9
相关论文
共 50 条
  • [21] Percutaneous injection of recombinant human bone morphogenetic protein-2 in a calcium phosphate paste accelerates healing of a canine tibial osteotomy
    Edwards, RB
    Seeherman, HJ
    Bogdanske, JJ
    Devitt, J
    Vanderby, P
    Markel, MD
    JOURNAL OF BONE AND JOINT SURGERY-AMERICAN VOLUME, 2004, 86A (07): : 1425 - 1438
  • [22] Acceleration of second and fourth metatarsal fracture healing with recombinant human bone morphogenetic protein-2/calcium phosphate cement in horses
    Perrier, Melanie
    Lu, Yan
    Nemke, Brett
    Kobayashi, Hirohito
    Peterson, Anna
    Markel, Mark
    VETERINARY SURGERY, 2008, 37 (07) : 648 - 655
  • [23] In vitro cellular responses to bioerodible particles loaded with recombinant human bone morphogenetic protein-2
    Puleo, DA
    Huh, WW
    Duggirala, SS
    DeLuca, PP
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH, 1998, 41 (01): : 104 - 110
  • [24] Fabrication of Vascularized Bone Flaps with Sustained Release of Recombinant Human Bone Morphogenetic Protein-2 and Arteriovenous Bundle
    Li, Bo
    Ruan, Changshun
    Ma, Yufei
    Huang, Zhifeng
    Huang, Zhenfei
    Zhou, Gang
    Zhang, Jing
    Wang, Hai
    Wu, Zhihong
    Qiu, Guixing
    TISSUE ENGINEERING PART A, 2018, 24 (17-18) : 1413 - 1422
  • [25] Effects of Self-Assembling Peptide Hydrogel Scaffold on Bone Regeneration with Recombinant Human Bone Morphogenetic Protein-2
    Ikeno, Masayuki
    Hibi, Hideharu
    Kinoshita, Kazuhiko
    Hattori, Hisashi
    Ueda, Minoru
    INTERNATIONAL JOURNAL OF ORAL & MAXILLOFACIAL IMPLANTS, 2013, 28 (05) : E283 - E289
  • [26] Evaluation of an injectable silk fibroin enhanced calcium phosphate cement loaded with human recombinant bone morphogenetic protein-2 in ovine lumbar interbody fusion
    Gu, Yong
    Chen, Liang
    Yang, Hui-Lin
    Luo, Zong-Ping
    Tang, Tian-Si
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2011, 97A (02) : 177 - 185
  • [27] Enhancement by recombinant human bone morphogenetic protein-2 of bone formation by means of porous hydroxyapatite in mandibular bone defects
    Yoshida, K
    Bessho, K
    Fujimura, K
    Konishi, Y
    Kusumoto, K
    Ogawa, Y
    Iizuka, T
    JOURNAL OF DENTAL RESEARCH, 1999, 78 (09) : 1505 - 1510
  • [28] The effect of combined delivery of recombinant human bone morphogenetic protein-2 and recombinant human vascular endothelial growth factor 165 from biomimetic calcium-phosphate-coated implants on osseointegration
    Ramazanoglu, Mustafa
    Lutz, Rainer
    Ergun, Celaletdin
    von Wilmowsky, Cornelius
    Nkenke, Emeka
    Schlegel, Karl Andreas
    CLINICAL ORAL IMPLANTS RESEARCH, 2011, 22 (12) : 1433 - 1439
  • [29] Production of the recombinant human bone morphogenetic protein-2 in Escherichia coli and testing of its biological activity in vitro and in vivo
    N. E. Sharapova
    A. P. Kotnova
    Z. M. Galushkina
    N. V. Lavrova
    N. N. Poletaeva
    A. E. Tukhvatulin
    A. S. Semikhin
    A. V. Gromov
    L. A. Soboleva
    A. S. Ershova
    V. V. Zaitsev
    O. V. Sergienko
    V. G. Lunin
    A. S. Karyagina
    Molecular Biology, 2010, 44 : 923 - 930
  • [30] Production of the recombinant human bone morphogenetic protein-2 in Escherichia coli and testing of its biological activity in vitro and in vivo
    Sharapova, N. E.
    Kotnova, A. P.
    Galushkina, Z. M.
    Lavrova, N. V.
    Poletaeva, N. N.
    Tukhvatulin, A. E.
    Semikhin, A. S.
    Gromov, A. V.
    Soboleva, L. A.
    Ershova, A. S.
    Zaitsev, V. V.
    Sergienko, O. V.
    Lunin, V. G.
    Karyagina, A. S.
    MOLECULAR BIOLOGY, 2010, 44 (06) : 923 - 930