Literature DB >> 14642836

Hydroxyapatite-coated tendon chitosan tubes with adsorbed laminin peptides facilitate nerve regeneration in vivo.

Soichiro Itoh1, Isamu Yamaguchi, Masumi Suzuki, Shizuko Ichinose, Kazuo Takakuda, Hisatoshi Kobayashi, Kenichi Shinomiya, Junzo Tanaka.   

Abstract

On the inner surface of tendon chitosan tubes having a triangular shape and a hydroxyapatite coating (t-chitosan/HAp tube), laminin-1 and laminin peptides (YIGSR, IKVAV) have been adsorbed in order to develop nerve growth conduits. The mechanical property, biocompatibility and efficacy of these tubes for nerve regeneration were examined. Step-1: bridge grafting (15 mm) into the sciatic nerve of Sprague-Dawley (SD) rats was carried out using either t-chitosan or t-chitosan/HAp tubes having either a circular or triangular cross section (N=12 in each group). Specimens were taken after 2-, 4-, 6- and 8-week post-implantation (N=3 in each group) for histology determinations. Step-2: t-chitosan/HAp tubes having a triangular cross section with adsorbed laminin-1, CDPGYIGSR or CSRARKQAASIKVAVSAD, as well as control tubes without pre-adsorption were used for implantation (N=18 in each group). Isografting was also carried out (N=6). Histological evaluation was carried out similarly as in Step-1. Furthermore, evoked muscle and sensory nerve action potentials were recorded, and the percentage of myelinated axon area measured at 10 mm distance of the distal anastomosed site in the experimental, control and isograft groups after 12 weeks (N=6 in each group). The results of histological findings, as well as mechanical properties, suggest that a triangular tube shape with a HAp coating benefits nerve regeneration. The effect of laminin peptides (YIGSR, followed by IKVAV) to enhance the growth of regenerating axons has been found comparable with intact laminin-1. Although histological regeneration in both the YIGSR- and laminin-1-treated t-chitosan/HAp tubes matches the isografts, the functional recovery is however delayed.

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Year:  2003        PMID: 14642836     DOI: 10.1016/j.brainres.2003.09.003

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  12 in total

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2.  Enhancement of nerve regeneration along a chitosan conduit combined with bone marrow mesenchymal stem cells.

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Journal:  J Mater Sci Mater Med       Date:  2007-08-01       Impact factor: 3.896

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Authors:  Songtao Gao; Yan Zheng; Qiqing Cai; Weitao Yao; Jiaqiang Wang; Peng Zhang; Xin Wang
Journal:  J Mater Sci Mater Med       Date:  2014-01-23       Impact factor: 3.896

5.  3D porous chitosan scaffolds suit survival and neural differentiation of dental pulp stem cells.

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Journal:  Cell Mol Neurobiol       Date:  2014-05-01       Impact factor: 5.046

6.  Microfluidic generation of haptotactic gradients through 3D collagen gels for enhanced neurite growth.

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7.  Spider silk constructs enhance axonal regeneration and remyelination in long nerve defects in sheep.

Authors:  Christine Radtke; Christina Allmeling; Karl-Heinz Waldmann; Kerstin Reimers; Kerstin Thies; Henning C Schenk; Anja Hillmer; Merlin Guggenheim; Gudrun Brandes; Peter M Vogt
Journal:  PLoS One       Date:  2011-02-25       Impact factor: 3.240

8.  Synthesis and character investigation of new collagen Hydrolysate/polyvinyl alcohol/hydroxyapatite Polymer-Nano-Porous Membranes: I. Experimental design optimization in thermal and structural properties.

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Journal:  Syst Synth Biol       Date:  2013-06-18

9.  Inflammatory response on injection of chitosan/GP to the brain.

Authors:  K E Crompton; D Tomas; D I Finkelstein; M Marr; J S Forsythe; M K Horne
Journal:  J Mater Sci Mater Med       Date:  2006-07       Impact factor: 4.727

Review 10.  Challenges for nerve repair using chitosan-siloxane hybrid porous scaffolds.

Authors:  Yuki Shirosaki; Satoshi Hayakawa; Akiyoshi Osaka; Maria A Lopes; José D Santos; Stefano Geuna; Ana C Mauricio
Journal:  Biomed Res Int       Date:  2014-06-17       Impact factor: 3.411

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