Literature DB >> 23907421

The role of peripheral nerve ECM components in the tissue engineering nerve construction.

Xupeng Gao, Yu Wang, Jifeng Chen, Jiang Peng.   

Abstract

The extracellular matrix (ECM) is the naturally occurring substrate that provides a support structure and an attachment site for cells. It also produces a biological signal, which plays an important role in and has significant impact on cell adhesion, migration, proliferation, differentiation, and gene expression. Peripheral nerve repair is a complicated process involving Schwann cell proliferation and migration, 'bands of Büngner' formation, and newborn nerve extension. In the ECM of peripheral nerves, macromolecules are deposited among cells; these constitute the microenvironment of Schwann cell growth. Such macromolecules include collagen (I, III, IV, V), laminin, fibronectin, chondroitin sulfate proteoglycans (CSPGs), and other nerve factors. Collagen, the main component of ECM, provides structural support and guides newborn neurofilament extension. Laminin, fibronectin, CSPGs, and neurotrophic factors, are promoters or inhibitors, playing different roles in nerve repair after injury. By a chemical decellularization process, acellular nerve allografting eliminates the antigens responsible for allograft rejection and maintains most of the ECM components, which can effectively guide and enhance nerve regeneration. Thus, the composition and features of peripheral nerve ECM suggest its superiority as nerve repair material. This review focuses on the structure, function, and application in the tissue engineering nerve construction of the peripheral nerve ECM components.

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Year:  2013        PMID: 23907421     DOI: 10.1515/revneuro-2013-0022

Source DB:  PubMed          Journal:  Rev Neurosci        ISSN: 0334-1763            Impact factor:   4.353


  22 in total

1.  Cauda equina-derived extracellular matrix for fabrication of nanostructured hybrid scaffolds applied to neural tissue engineering.

Authors:  Xiaoxiao Wen; Yu Wang; Zhiyuan Guo; Haoye Meng; Jingxiang Huang; Li Zhang; Bin Zhao; Qing Zhao; Yudong Zheng; Jiang Peng
Journal:  Tissue Eng Part A       Date:  2014-12-16       Impact factor: 3.845

2.  Effective decellularization of human nerve matrix for regenerative medicine with a novel protocol.

Authors:  N Nieto-Nicolau; P López-Chicón; O Fariñas; S Bolívar; E Udina; X Navarro; R P Casaroli-Marano; A Vilarrodona
Journal:  Cell Tissue Res       Date:  2021-01-20       Impact factor: 5.249

Review 3.  The Role of Collagens in Peripheral Nerve Myelination and Function.

Authors:  Peiwen Chen; Matilde Cescon; Paolo Bonaldo
Journal:  Mol Neurobiol       Date:  2014-08-21       Impact factor: 5.590

4.  Decellularized peripheral nerve as an injectable delivery vehicle for neural applications.

Authors:  Deanna Bousalis; Michaela W McCrary; Natalie Vaughn; Nora Hlavac; Ashley Evering; Shruti Kolli; Young Hye Song; Cameron Morley; Thomas E Angelini; Christine E Schmidt
Journal:  J Biomed Mater Res A       Date:  2021-09-29       Impact factor: 4.396

5.  Development of a magnetically aligned regenerative tissue-engineered electronic nerve interface for peripheral nerve applications.

Authors:  Mary Kasper; Bret Ellenbogen; Ryan Hardy; Madison Cydis; Jorge Mojica-Santiago; Abdullah Afridi; Benjamin S Spearman; Ishita Singh; Cary A Kuliasha; Eric Atkinson; Kevin J Otto; Jack W Judy; Carlos Rinaldi-Ramos; Christine E Schmidt
Journal:  Biomaterials       Date:  2021-10-22       Impact factor: 15.304

6.  Syndecan-3 contributes to the regulation of the microenvironment at the node of Ranvier following end-to‑side neurorrhaphy: sodium image analysis.

Authors:  Chiung-Hui Liu; Yu-Chen Kuo; Che-Yu Wang; Chao-Chun Hsu; Ying-Jui Ho; Yun-Chi Chiang; Fu-Der Mai; Wei-Jhih Lin; Wen-Chieh Liao
Journal:  Histochem Cell Biol       Date:  2020-11-10       Impact factor: 4.304

7.  Evaluation of anatomical and histological characteristics of human peripheral nerves: as an effort to develop an efficient allogeneic nerve graft.

Authors:  Jin-Hyung Im; Seung-Han Shin; Myeong-Kyu Lee; Sae-Rom Lee; Jae-Jin Lee; Yang-Guk Chung
Journal:  Cell Tissue Bank       Date:  2022-03-11       Impact factor: 1.752

8.  Human umbilical cord mesenchymal stem cells promote peripheral nerve repair via paracrine mechanisms.

Authors:  Zhi-Yuan Guo; Xun Sun; Xiao-Long Xu; Qing Zhao; Jiang Peng; Yu Wang
Journal:  Neural Regen Res       Date:  2015-04       Impact factor: 5.135

9.  Effects of Chemical and Radiation Sterilisation on the Biological and Biomechanical Properties of Decellularised Porcine Peripheral Nerves.

Authors:  James D R Holland; Georgina Webster; Paul Rooney; Stacy-Paul Wilshaw; Louise M Jennings; Helen E Berry
Journal:  Front Bioeng Biotechnol       Date:  2021-06-03

10.  T Lymphocyte Subsets and Cytokines in Rats Transplanted with Adipose-Derived Mesenchymal Stem Cells and Acellular Nerve for Repairing the Nerve Defects.

Authors:  Liang-Fu Jiang; Ou Chen; Ting-Gang Chu; Jian Ding; Qing Yu
Journal:  J Korean Neurosurg Soc       Date:  2015-08-28
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