Literature DB >> 27718449

AMECM/DCB scaffold prompts successful total meniscus reconstruction in a rabbit total meniscectomy model.

Zhiguo Yuan1, Shuyun Liu2, Chunxiang Hao3, Weimin Guo4, Shuang Gao5, Mingjie Wang6, Mingxue Chen7, Zhen Sun8, Yichi Xu9, Yu Wang10, Jiang Peng11, Mei Yuan12, Quan-Yi Guo13.   

Abstract

Tissue-engineered meniscus regeneration is a very promising treatment strategy for meniscus lesions. However, generating the scaffold presents a huge challenge for meniscus engineering as this has to meet particular biomechanical and biocompatibility requirements. In this study, we utilized acellular meniscus extracellular matrix (AMECM) and demineralized cancellous bone (DCB) to construct three different types of three-dimensional porous meniscus scaffold: AMECM, DCB, and AMECM/DCB, respectively. We tested the scaffolds' physicochemical characteristics and observed their interactions with meniscus fibrochondrocytes to evaluate their cytocompatibility. We implanted the three different types of scaffold into the medial knee menisci of New Zealand rabbits that had undergone total meniscectomy; negative control rabbits received no implants. The reconstructed menisci and corresponding femoral condyle and tibial plateau cartilage were all evaluated at 3 and 6 months (n = 8). The in vitro study demonstrated that the AMECM/DCB scaffold had the most suitable biomechanical properties, as this produced the greatest compressive and tensile strength scores. The AMECM/DCB and AMECM scaffolds facilitated fibrochondrocyte proliferation and the secretion of collagen and glycosaminoglycans (GAGs) more effectively than did the DCB scaffold. The in vivo experiments demonstrated that both the AMECM/DCB and DCB groups had generated neomeniscus at both 3 and 6 months post-implantation, but there was no obvious meniscus regeneration in the AMECM or control groups, so the neomeniscus analysis could not perform on AMECM and control group. At both 3 and 6 months, histological scores were better for regenerated menisci in the AMECM/DCB than in the DCB group, and significantly better for articular cartilage in the AMECM/DCB group compared with the other three groups. Knee MRI scores (Whole-Organ Magnetic Resonance Imaging Scores (WORMS)) were better in the AMECM/DCB group than in the other three groups at both 3 and 6 months. At both 3 and 6 months, RT-PCR demonstrated that aggrecan, Sox9, and collagen II content was significantly higher, and mechanical testing demonstrated greater tensile strength, in the AMECM/DCB group neomenisci compared with the DCB group.
Copyright © 2016 The Authors. Published by Elsevier Ltd.. All rights reserved.

Entities:  

Keywords:  DCB (demineralized cancellous bone); ECM (extracellular matrix); In vivo test; Meniscus; Scaffold

Mesh:

Substances:

Year:  2016        PMID: 27718449     DOI: 10.1016/j.biomaterials.2016.09.017

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


  15 in total

1.  [Effect of HBP-A on meniscal injury and pathological hypertrophy and calcification of the meniscus].

Authors:  Guo-Qing DU; Dao-Fang Ding; Yuan-Yuan Feng; Ling-Hui Li; Teng-Fei Lei; Bo Chen; Zhen Deng; Hong-Sheng Zhan
Journal:  Nan Fang Yi Ke Da Xue Xue Bao       Date:  2016-04-20

Review 2.  * The Ovine Model for Meniscus Tissue Engineering: Considerations of Anatomy, Function, Implantation, and Evaluation.

Authors:  Andrzej Brzezinski; Salim A Ghodbane; Jay M Patel; Barbara A Perry; Charles J Gatt; Michael G Dunn
Journal:  Tissue Eng Part C Methods       Date:  2017-09-29       Impact factor: 3.056

3.  Surface modification of decellularized trachea matrix with collagen and laser micropore technique to promote cartilage regeneration.

Authors:  Yong Xu; Yaqiang Li; Yanqun Liu; Hao Li; Zihao Jia; Yao Tang; Gening Jiang; Xue Zhang; Liang Duan
Journal:  Am J Transl Res       Date:  2019-09-15       Impact factor: 4.060

Review 4.  Human Knee Meniscus Regeneration Strategies: a Review on Recent Advances.

Authors:  Mamatha M Pillai; J Gopinathan; R Selvakumar; Amitava Bhattacharyya
Journal:  Curr Osteoporos Rep       Date:  2018-06       Impact factor: 5.096

5.  [Research progress of scaffold materials for tissue engineered meniscus].

Authors:  Ziyan Feng; Yifei Fan; Jiusi Guo; Weili Fu
Journal:  Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi       Date:  2019-08-15

Review 6.  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

7.  Enhancement of acellular cartilage matrix scaffold by Wharton's jelly mesenchymal stem cell-derived exosomes to promote osteochondral regeneration.

Authors:  Shuangpeng Jiang; Guangzhao Tian; Zhen Yang; Xiang Gao; Fuxin Wang; Juntan Li; Zhuang Tian; Bo Huang; Fu Wei; Xinyu Sang; Liuqi Shao; Jian Zhou; Zhenyong Wang; Shuyun Liu; Xiang Sui; Quanyi Guo; Weimin Guo; Xu Li
Journal:  Bioact Mater       Date:  2021-02-13

8.  Hierarchical macro-microporous WPU-ECM scaffolds combined with Microfracture Promote in Situ Articular Cartilage Regeneration in Rabbits.

Authors:  Mingxue Chen; YangYang Li; Shuyun Liu; Zhaoxuan Feng; Hao Wang; Dejin Yang; Weimin Guo; Zhiguo Yuan; Shuang Gao; Yu Zhang; Kangkang Zha; Bo Huang; Fu Wei; Xinyu Sang; Qinyu Tian; Xuan Yang; Xiang Sui; Yixin Zhou; Yufeng Zheng; Quanyi Guo
Journal:  Bioact Mater       Date:  2020-12-22

9.  3D-printed cell-free PCL-MECM scaffold with biomimetic micro-structure and micro-environment to enhance in situ meniscus regeneration.

Authors:  Weimin Guo; Mingxue Chen; Zhenyong Wang; Yue Tian; Jinxuan Zheng; Shuang Gao; Yangyang Li; Yufeng Zheng; Xu Li; Jingxiang Huang; Wei Niu; Shuangpeng Jiang; Chunxiang Hao; Zhiguo Yuan; Yu Zhang; Mingjie Wang; Zehao Wang; Jiang Peng; Aiyuan Wang; Yu Wang; Xiang Sui; Wenjing Xu; Libo Hao; Xifu Zheng; Shuyun Liu; Quanyi Guo
Journal:  Bioact Mater       Date:  2021-03-27

10.  Biofunctionalized Structure and Ingredient Mimicking Scaffolds Achieving Recruitment and Chondrogenesis for Staged Cartilage Regeneration.

Authors:  Zhen Yang; Hao Li; Yue Tian; Liwei Fu; Cangjian Gao; Tianyuan Zhao; Fuyang Cao; Zhiyao Liao; Zhiguo Yuan; Shuyun Liu; Quanyi Guo
Journal:  Front Cell Dev Biol       Date:  2021-03-25
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