747
Views
50
CrossRef citations to date
0
Altmetric
Original Articles

Laser Patterning of Bacterial Cellulose Hydrogel and its Modification With Gelatin and Hydroxyapatite for Bone Tissue Engineering

, , , , , & show all
Pages 173-180 | Received 28 Mar 2011, Accepted 02 Aug 2011, Published online: 04 Jan 2013

References

  • Bäckdahl , H. , Esguerra , M. , Delbro , D. , Risberg , B. and Gatenholm , P. 2008 . Engineering microporosity in bacterial cellulose scaffolds . J. Tissue Eng. Regen. Med. , 2 ( 6 ) : 320 – 330 .
  • Bäckdahl , H. , Helenius , G. , Bodin , A. , Nannmark , U. , Johansson , B. R. , Risberg , B. and Gatenholm , P. 2006 . Mechanical properties of bacterial cellulose and interactions with smooth muscle cells . Biomaterials , 27 : 2141 – 2149 .
  • Bäkdahl , H. , Esguerra , M. , Delbro , D. , Risberg , B. and Gatenholm , P. 2008 . Engineering microporosity in bacterial cellulose scaffolds . J. Tissue Eng. Regen. Med. , 2 ( 6 ) : 320 – 330 .
  • Barreto , P.L.M. , Pires , A.T.N. and Soldi , V. 2003 . Thermal degradation of edible films based on milk proteins and gelatin in inert atmosphere . Polym. Degrad. Stab. , 79 ( 1 ) : 147 – 152 .
  • Barud , H. , Assun , O.R. , Martines , M. , Dexpert-Ghys , J. , Marques , R. , Messaddeq , Y. and Ribeiro , S. 2008 . Bacterial cellulose–silica organic–inorganic hybrids . J. Sol-Gel Sci. Technol. , 46 ( 3 ) : 363 – 367 .
  • Bigi , A. , Panzavolta , S. and Roveri , N. 1998 . Hydroxyapatite-gelatin films: a structural and mechanical characterization . Biomaterials , 19 ( 7–9 ) : 739 – 744 .
  • Bodin , A. , Concaro , S. , Brittberg , M. and Gatenholm , P. 2007 . Bacterial cellulose as a potential meniscus implant . J. Tissue Eng. Regen. Med. , 1 ( 5 ) : 406 – 408 .
  • Bryanta , J.S. , Cuy , L.J. , Hauch , D.K. and Ranter , D.B. 2007 . Photo-patterning of porous hydrogels for tissue engineering . Biomaterials , 28 : 2978 – 2986 .
  • Cao , B. and Mao , C. 2007 . Oriented nucleation of hydroxylapatite crystals on spider dragline silks . Langmuir , 23 ( 21 ) : 10701 – 10705 .
  • Hutchens , S.A. , Benson , R.S. , Evans , B.R. , O'Neill , H.M. and Rawn , C.J. 2006 . Biomimetic synthesis of calcium-deficient hydroxyapatite in a natural hydrogel . Biomaterials , 27 ( 26 ) : 4661 – 4670 .
  • Cheng , M. , Deng , J. , Yang , F. , Gong , Y. , Zhao , N. and Zhang , X. 2003 . Study on physical properties and nerve cell affinity of composite films from chitosan and gelatin solutions . Biomaterials , 24 ( 17 ) : 2871 – 2880 .
  • Decherchi , P. , Cochard , P. and Gauthier , P. 1997 . Dual staining assessment of Schwann cell viability within whole peripheral nerves using calcein-AM and ethidium homodimer . J. Neurosci. Methods , 71 ( 2 ) : 205 – 213 .
  • Dorairajan , A. , Reddy , R. and Krikler , S. 2005 . Outcome of acetabular revision using an uncemented hydroxyapatite-coated component: Two-to five-year results and review . J. Arthroplasty , 20 ( 2 ) : 209 – 218 .
  • Fang , B. , Wan , Y.Z. , Tang , T.T. , Gao , C. and Da , K.R. 2008 . Proliferation and osteoblastic differentiation of human bone marrow stromal cells on hydroxyapatite/bacterial cellulose nanocomposite scaffolds . Tissue Eng. , 15 ( 5 ) : 1091 – 1098 .
  • Ghasemi-Mobarakeh , L. , Prabhakaran , M. P. , Morshed , M. , Nasr-Esfahani , M.-H. and Ramakrishna , S. 2008 . Electrospun poly([var epsilon]-caprolactone)/gelatin nanofibrous scaffolds for nerve tissue engineering . Biomaterials , 29 ( 34 ) : 4532 – 4539 .
  • Granja , P. , Barbosa , M. , Pouységu , L. , De Jéso , B. , Rouais , F. and Baquey , C. 2001 . Cellulose phosphates as biomaterials. Mineralization of chemically modified regenerated cellulose hydrogels . J. Mater. Sci. , 36 ( 9 ) : 2163 – 2172 .
  • Hartgerink , J.D. , Beniash , E. and Stupp , S.I. 2001 . Self-assembly and mineralization of peptide-amphiphile nanofibers . Science , 294 ( 5547 ) : 1684 – 1688 .
  • Holmes , R. , Bucholz , R. and Mooney , V. 1986 . Porous hydroxyapatite as a bone-graft substitute in metaphyseal defects. A histometric study . J. Bone Joint Surg. , 68 ( 6 ) : 904
  • Holmes , R. , Wardrop , R. and Wolford , L. 1988 . Hydroxylapatite as a bone graft substitute in orthognathic surgery: histologic and histometric findings . J. Oral Maxillofacial Surg. , 46 ( 8 ) : 661 – 671 .
  • Neeley , W.L. , Redenti , S. , Klassen , H. , Tao , S. , Desai , T. , Young , M.J. and Langera , R. 2008 . A microfabricated scaffold for retinal progenitor cell grafting . Biomaterials , 29 : 418 – 426 .
  • Ishihara , K. , Arai , J. , Nakabayashi , N. , Morita , S. and Furuya , K. 1992 . Adhesive bone cement containing hydroxyapatite particle as bone compatible filler . J. Bimed. Mater. Res. , 26 ( 7 ) : 937 – 945 .
  • Keshk , S. and Sameshima , K. 2006 . Influence of lignosulfonate on crystal structure and productivity of bacterial cellulose in a static culture . Enzyme Microb. Technol. , 40 ( 1 ) : 4 – 8 .
  • Ki , C. , Baek , D. , Gang , K. , Lee , K. , Um , I. and Park , Y. 2005 . Characterization of gelatin nanofiber prepared from gelatin-formic acid solution . Polymer , 46 ( 14 ) : 5094 – 5102 .
  • Kim , B.-S. and Mooney , D.J. 1998 . Development of biocompatible synthetic extracellular matrices for tissue engineering . Trends Biotechnol. , 16 ( 5 ) : 224 – 230 .
  • Kim , S. , Nimni , M.E. , Yang , Z. and Han , B. 2005 . Chitosan/gelatin-based films crosslinked by proanthocyanidin . J. Biomed. Mater. Res. B , 75B ( 2 ) : 442 – 450 .
  • Koutsopoulos , S. 2002 . Synthesis and characterization of hydroxyapatite crystals: A review study on the analytical methods . J. Biomed. Mater. Res. A , 62 ( 4 ) : 600 – 612 .
  • Kreis , T. and Vale , R. 1999 . Extracelluar matrix, anchor, and adhesion proteins , 2nd , New York : Oxford University Press . vol. part 3
  • Lévesque , S. , Lim , R. and Shoichet , M. 2005 . Macroporous interconnected dextran scaffolds of controlled porosity for tissue-engineering applications . Biomaterials , 26 ( 35 ) : 7436 – 7446 .
  • Li , P. , Ohtsuki , C. , Kokubo , T. , Nakanishi , K. , Soga , N. and de Groot , K. 1994 . The role of hydrated silica, titania, and alumina in inducing apatite on implants . J. Biodmed. Mater. Res. , 28 ( 1 ) : 7 – 15 .
  • Liao , S. , Guan , K. , Cui , F. , Shi , S. and Sun , T. 2003 . Lumbar spinal fusion with a mineralized collagen matrix and rhBMP-2 in a rabbit model . Spine , 28 ( 17 ) : 1954
  • Liu , Q. , Hedberg , E. , Liu , Z. , Bahulekar , R. , Meszlenyi , R. and Mikos , A. 2000 . Preparation of macroporous poly (2-hydroxyethyl methacrylate) hydrogels by enhanced phase separation . Biomaterials , 21 ( 21 ) : 2163 – 2169 .
  • Lysaght , M.J. and Reyes , J. 2001 . The growth of tissue engineering . Tissue Eng. , 7 ( 5 ) : 485 – 493 .
  • Ponticiello , M.S. , Schinagl , R.M. , Kadiyala , S. and Barry , F.P. 2000 . Gelatin-based resorbable sponge as a carrier matrix for human mesenchymal stem cells in cartilage regeneration therapy . J. Biomed. Mater. Res. , 52 ( 2 ) : 246 – 255 .
  • Moutos , F.T. , Freed , L.E. and Guilak , F. 2007 . A biomimetic three-dimensional woven composite scaffold for functional tissue engineering of cartilage . Nat. Mater. , 6 ( 2 ) : 162 – 167 .
  • Muller , A. , Muller , L. , Hofmann , I. and Greil , P. 2005 . Accelerated biomimetic deposition of bonelike apatite on fibrous cellulose templates . Key Eng. Mater. , 284 ( 286 ) : 183 – 186 .
  • Muyonga , J. , Cole , C. and Duodu , K. 2004 . Fourier transform infrared (FTIR) spectroscopic study of acid soluble collagen and gelatin from skins and bones of young and adult Nile perch (Lates niloticus) . Food Chem. , 86 ( 3 ) : 325 – 332 .
  • Che , K.-Y. , Shyu , P.-C. , Chen , Y.-S. and Yao , C.-H. 2008 . Novel bone substitute composed of oligomeric proanthocyanidins-crosslinked gelatin and tricalcium phosphate . Macromol. Biosci. , 8 ( 10 ) : 942 – 950 .
  • Nerem , R. 1991 . Cellular engineering . Ann. Biomed. Eng. , 19 ( 5 ) : 529 – 545 .
  • Nge , T. , Nogi , M. , Yano , H. and Sugiyama , J. 2010 . Microstructure and mechanical properties of bacterial cellulose/chitosan porous scaffold . Cellulose , 17 ( 2 ) : 349 – 363 .
  • Nge , T.T. and Sugiyama , J. 2007 . Surface functional group dependent apatite formation on bacterial cellulose microfibrils network in a simulated body fluid . J. Biomed. Mater. Res. A , 81A ( 1 ) : 124 – 134 .
  • Plieva , F. , Ekstr , M.P. , Galaev , I. and Mattiasson , B. 2008 . Monolithic cryogels with open porous structure and unique double-continuous macroporous networks . Soft Matter , 4 ( 12 ) : 2418 – 2428 .
  • Pranoto , Y. , Lee , C.M. and Park , H.J. 2007 . Characterizations of fish gelatin films added with gellan and [kappa]-carrageenan . LWT-Food Sci. Technol. , 40 ( 5 ) : 766 – 774 .
  • Rhee , S. and Tanaka , J. 1998 . Hydroxyapatite coating on a collagen membrane by a biomimetic method . J. Am. Ceram. Soc. , 81 ( 11 ) : 3029 – 3031 .
  • Rhee , S. and Tanaka , J. 2000 . Hydroxyapatite formation on cellulose cloth induced by citric acid. J. Mater. Sci. Mater. Med , 11 ( 7 ) : 449 – 452 .
  • Sannino , A. , Netti , P. , Madaghiele , M. , Coccoli , V. , Luciani , A. , Maffezzoli , A. and Nicolais , L. 2006 . Synthesis and characterization of macroporous poly (ethylene glycol)-based hydrogels for tissue engineering application . J. Biomed. Mater. Res. Part A , 79 ( 2 ) : 229 – 236 .
  • Sato , K. , Kogure , T. , Kumagai , Y. and Tanaka , J. 2001 . Crystal orientation of hydroxyapatite induced by ordered carboxyl groups . J. Colloid Interface Sci. , 240 ( 1 ) : 133 – 138 .
  • Schönfelder , U. , Abel , M. , Wiegand , C. , Klemm , D. , Elsner , P. and Hipler , U. 2005 . Influence of selected wound dressings on PMN elastase in chronic wound fluid and their antioxidative potential in vitro . Biomaterials , 26 ( 33 ) : 6664 – 6673 .
  • Stevens , M. and George , J. 2005 . Exploring and engineering the cell surface interface . Science , 310 ( 5751 ) : 1135 – 1138 .
  • Stokols , S. and Tuszynski , M.H. 2004 . The fabrication and characterization of linearly oriented nerve guidance scaffolds for spinal cord injury . Biomaterials , 25 ( 27 ) : 5839 – 5846 .
  • Stokols , S and Tuszynski , M H . 2006 . Freeze-dried agarose scaffolds with uniaxial channels stimulate and guide linear axonal growth following spinal cord injury . Biomaterials , 27 ( 3 ) : 443 – 51 .
  • Stupp , S. and Braun , P. 1997 . Molecular manipulation of microstructures: biomaterials, ceramics, and semiconductors . Science , 277 ( 5330 ) : 1242
  • Suetsugu , Y. , Shimoya , I. and Tanaka , J. 1998 . Configuration of carbonate ions in apatite structure determined by polarized infrared spectroscopy . J. Am. Ceram. Soc. , 81 ( 3 ) : 746 – 748 .
  • Tiaw , K.S. , Goh , S.W. , Hong , M. , Wang , Z. , Lan , B. and Teoh , S.H. 2005 . Laser surface modification of poly(ϵ-caprolactone) (PCL) membrane for tissue engineering applications . Biomaterials , 26 ( 7 ) : 763 – 769 .
  • Van Vlierberghe , S. , Cnudde , V. , Dubruel , P. , Masschaele , B. , Cosijns , A. , De Paepe , I. , Jacobs , P. , Van Hoorebeke , L. , Remon , J. and Schacht , E. 2007 . Porous gelatin hydrogels: 1. Cryogenic formation and structure analysis . Biomacromolecules , 8 ( 2 ) : 331 – 337 .
  • Watanabe , K. , Tabuchi , M. , Morinaga , Y. and Yoshinaga , F. 1998 . Structural features and properties of bacterial cellulose produced in agitated culture . Cellulose , 5 ( 3 ) : 187 – 200 .
  • Weiner , S. and Wagner , H. 1998 . The material bone: structure-mechanical function relations . Ann. Rev. Mater. Sci. , 28 ( 1 ) : 271 – 298 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.