Literature DB >> 20471080

Interactions between meniscal cells and a self assembled biomimetic surface composed of hyaluronic acid, chitosan and meniscal extracellular matrix molecules.

Guak-Kim Tan1, Donna L M Dinnes, Lauren N Butler, Justin J Cooper-White.   

Abstract

Menisci are one of the most commonly injured parts of the knee with a limited healing potential. This study focuses on fabrication and characterization of biomimetic surfaces for meniscal tissue engineering. To achieve this, a combination of hyaluronic acid/chitosan (HA/CH) mutilayers with covalently immobilized major extracellular matrix (ECM) components of native meniscus, namely collagen I/II (COL.I/II) and chondroitin-6-sulfate (C6S) was employed. Adsorption of the biomolecules was monitored using a quartz crystal microbalance with dissipation (QCM-D) and fourier transform-surface plasmon resonance (FT-SPR). Immobilization of the biomolecules onto HA/CH mutilayers was achieved by sequential adsorption, with optimum binding at a molar ratio of 1.4:1 (COL.I/II: C6S). After adding COL.I/II, the layers became relatively more rigid and large aggregates were evident. The effects of the modified surfaces on cell proliferation, gene expression and proteoglycan production of rat meniscal cells were examined. Quantitative real-time reverse transcriptase polymerase chain reaction (RT-qPCR) analysis showed that primary meniscal cells dedifferentiated rapidly after one passage in monolayer culture. This process could be reversed by culturing the cells on C6S surfaces, as indicated by increases in both collagen II and aggrecan gene expression, as well as proteoglycan production. Cells with abundant lipid vacuoles were evident on all the surfaces over an extended culture period. The results demonstrate the feasibility of C6S surfaces to avoid the dedifferentiation that normally occurs during monolayer expansion of meniscal cells. Crown Copyright 2010. Published by Elsevier Ltd. All rights reserved.

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Year:  2010        PMID: 20471080     DOI: 10.1016/j.biomaterials.2010.04.018

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  13 in total

Review 1.  Interactions of meniscal cells with extracellular matrix molecules: towards the generation of tissue engineered menisci.

Authors:  Guak-Kim Tan; Justin J Cooper-White
Journal:  Cell Adh Migr       Date:  2011-05-01       Impact factor: 3.405

Review 2.  The knee meniscus: structure-function, pathophysiology, current repair techniques, and prospects for regeneration.

Authors:  Eleftherios A Makris; Pasha Hadidi; Kyriacos A Athanasiou
Journal:  Biomaterials       Date:  2011-07-18       Impact factor: 12.479

3.  Riboflavin-induced photo-crosslinking of collagen hydrogel and its application in meniscus tissue engineering.

Authors:  Jiseung Heo; Rachel H Koh; Whuisu Shim; Hwan D Kim; Hyun-Gu Yim; Nathaniel S Hwang
Journal:  Drug Deliv Transl Res       Date:  2016-04       Impact factor: 4.617

Review 4.  Advances and Prospects in Tissue-Engineered Meniscal Scaffolds for Meniscus Regeneration.

Authors:  Weimin Guo; Shuyun Liu; Yun Zhu; Changlong Yu; Shibi Lu; Mei Yuan; Yue Gao; Jingxiang Huang; Zhiguo Yuan; Jiang Peng; Aiyuan Wang; Yu Wang; Jifeng Chen; Li Zhang; Xiang Sui; Wenjing Xu; Quanyi Guo
Journal:  Stem Cells Int       Date:  2015-06-25       Impact factor: 5.443

Review 5.  Cell-Free Strategies for Repair and Regeneration of Meniscus Injuries through the Recruitment of Endogenous Stem/Progenitor Cells.

Authors:  Weimin Guo; Wenjing Xu; Zhenyong Wang; Mingxue Chen; Chunxiang Hao; Xifu Zheng; Jingxiang Huang; Xiang Sui; Zhiguo Yuan; Yu Zhang; Mingjie Wang; Xu Li; Zehao Wang; Jiang Peng; Aiyuan Wang; Yu Wang; Shuyun Liu; Shibi Lu; Quanyi Guo
Journal:  Stem Cells Int       Date:  2018-07-12       Impact factor: 5.443

6.  Microporous polysaccharide multilayer coated BCP composite scaffolds with immobilised calcitriol promote osteoporotic bone regeneration both in vitro and in vivo.

Authors:  Qian Tang; Zhichao Hu; Haiming Jin; Gang Zheng; XingFang Yu; Gang Wu; Haixiao Liu; Zhenzhong Zhu; Huazi Xu; Changqing Zhang; Liyan Shen
Journal:  Theranostics       Date:  2019-01-30       Impact factor: 11.556

7.  A structure-supporting, self-healing, and high permeating hydrogel bioink for establishment of diverse homogeneous tissue-like constructs.

Authors:  Hongqing Chen; Fei Fei; Xinda Li; Zhenguo Nie; Dezhi Zhou; Libiao Liu; Jing Zhang; Haitao Zhang; Zhou Fei; Tao Xu
Journal:  Bioact Mater       Date:  2021-03-23

8.  Effect of RGD functionalization and stiffness modulation of polyelectrolyte multilayer films on muscle cell differentiation.

Authors:  Varvara Gribova; Cécile Gauthier-Rouvière; Corinne Albigès-Rizo; Rachel Auzely-Velty; Catherine Picart
Journal:  Acta Biomater       Date:  2012-12-20       Impact factor: 8.947

9.  The interplay between chondrocyte redifferentiation pellet size and oxygen concentration.

Authors:  Betul Kul Babur; Parisa Ghanavi; Peter Levett; William B Lott; Travis Klein; Justin J Cooper-White; Ross Crawford; Michael R Doran
Journal:  PLoS One       Date:  2013-03-15       Impact factor: 3.240

10.  Intra-Articular Injection of Stromal Cell-Derived Factor 1α Promotes Meniscal Healing via Macrophage and Mesenchymal Stem Cell Accumulation in a Rat Meniscal Defect Model.

Authors:  Yohei Nishida; Yusuke Hashimoto; Kumi Orita; Kazuya Nishino; Takuya Kinoshita; Hiroaki Nakamura
Journal:  Int J Mol Sci       Date:  2020-07-30       Impact factor: 5.923

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