Literature DB >> 19097155

Effects of Schwann cell alignment along the oriented electrospun chitosan nanofibers on nerve regeneration.

Wei Wang1, Soichiro Itoh, Katsumi Konno, Takeshi Kikkawa, Shizuko Ichinose, Katsuyoshi Sakai, Tsuneo Ohkuma, Kazuhiko Watabe.   

Abstract

We have constructed a chitosan nonwoven nanofiber mesh tube consisting of oriented fibers by the electrospinning method. The efficacy of oriented nanofibers on Schwann cell alignment and positive effect of this tube on peripheral nerve regeneration were confirmed. The physical properties of the chitosan nanofiber mesh sheets prepared by electrospinning with or without fiber orientation were characterized. Then, immortalized Schwann cells were cultured on these sheets. Furthermore, the chitosan nanofiber mesh tubes with or without orientation, and bilayered chitosan mesh tube with an inner layer of oriented nanofibers and an outer layer of randomized nanofibers were bridgegrafted into rat sciatic nerve defect. As a result of fiber orientation, the tensile strength along the axis of the sheet increased. Because Schwann cells aligned along the nanofibers, oriented fibrous sheets could exhibit a Schwann cell column. Functional recovery and electrophysiological recovery occurred in time in the oriented group as well as in the bilayered group, and approximately matched those in the isograft. Furthermore, histological analysis revealed that the sprouting of myelinated axons occurred vigorously followed by axonal maturation in the isograft, oriented, and bilayered group in the order. The oriented chitosan nanofiber mesh tube may be a promising substitute for autogenous nerve graft.

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Year:  2009        PMID: 19097155     DOI: 10.1002/jbm.a.32329

Source DB:  PubMed          Journal:  J Biomed Mater Res A        ISSN: 1549-3296            Impact factor:   4.396


  25 in total

1.  Automated and adaptable quantification of cellular alignment from microscopic images for tissue engineering applications.

Authors:  Feng Xu; Turker Beyazoglu; Evan Hefner; Umut Atakan Gurkan; Utkan Demirci
Journal:  Tissue Eng Part C Methods       Date:  2011-04-18       Impact factor: 3.056

2.  A suspended carbon fiber culture to model myelination by human Schwann cells.

Authors:  Antonio Merolli; Yong Mao; Joachim Kohn
Journal:  J Mater Sci Mater Med       Date:  2017-02-16       Impact factor: 3.896

3.  Schwann cell-seeded scaffold with longitudinally oriented micro-channels for reconstruction of sciatic nerve in rats.

Authors:  Yong-Guang Zhang; Qing-Song Sheng; Feng-Yu Qi; Xue-Yu Hu; Wei Zhao; Yu-Qing Wang; Li-Feng Lan; Jing-Hui Huang; Zhuo-Jing Luo
Journal:  J Mater Sci Mater Med       Date:  2013-03-20       Impact factor: 3.896

4.  Electrospun fibrous scaffolds promote breast cancer cell alignment and epithelial-mesenchymal transition.

Authors:  Sharmistha Saha; Xinrui Duan; Laying Wu; Pang-Kuo Lo; Hexin Chen; Qian Wang
Journal:  Langmuir       Date:  2011-12-27       Impact factor: 3.882

5.  Biomedical Applications of Biodegradable Polymers.

Authors:  Bret D Ulery; Lakshmi S Nair; Cato T Laurencin
Journal:  J Polym Sci B Polym Phys       Date:  2011-06-15

6.  Role of fibronectin in topographical guidance of neurite extension on electrospun fibers.

Authors:  Vivek J Mukhatyar; Manuel Salmerón-Sánchez; Soumon Rudra; Shoumit Mukhopadaya; Thomas H Barker; Andrés J García; Ravi V Bellamkonda
Journal:  Biomaterials       Date:  2011-03-05       Impact factor: 12.479

7.  Axially aligned electrically conducting biodegradable nanofibers for neural regeneration.

Authors:  Anuradha Subramanian; Uma Maheswari Krishnan; Swaminathan Sethuraman
Journal:  J Mater Sci Mater Med       Date:  2012-04-28       Impact factor: 3.896

8.  Enhanced Schwann cell attachment and alignment using one-pot "dual click" GRGDS and YIGSR derivatized nanofibers.

Authors:  Jukuan Zheng; Dimitria Kontoveros; Fei Lin; Geng Hua; Darrell H Reneker; Matthew L Becker; Rebecca K Willits
Journal:  Biomacromolecules       Date:  2014-12-17       Impact factor: 6.988

Review 9.  Electrospun Fibers for Spinal Cord Injury Research and Regeneration.

Authors:  Nicholas J Schaub; Christopher D Johnson; Blair Cooper; Ryan J Gilbert
Journal:  J Neurotrauma       Date:  2016-03-30       Impact factor: 5.269

10.  Nanofibers support oligodendrocyte precursor cell growth and function as a neuron-free model for myelination study.

Authors:  Yongchao Li; Muhammet Ceylan; Bikesh Shrestha; Haibo Wang; Q Richard Lu; Ramazan Asmatulu; Li Yao
Journal:  Biomacromolecules       Date:  2013-12-06       Impact factor: 6.988

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