Literature DB >> 22369960

Cartilage repair in transplanted scaffold-free chondrocyte sheets using a minipig model.

Goro Ebihara1, Masato Sato, Masayuki Yamato, Genya Mitani, Toshiharu Kutsuna, Toshihiro Nagai, Satoshi Ito, Taku Ukai, Miyuki Kobayashi, Mami Kokubo, Teruo Okano, Joji Mochida.   

Abstract

Lacking a blood supply and having a low cellular density, articular cartilage has a minimal ability for self-repair. Therefore, wide-ranging cartilage damage rarely resolves spontaneously. Cartilage damage is typically treated by chondrocyte transplantation, mosaicplasty or microfracture. Recent advances in tissue engineering have prompted research on techniques to repair articular cartilage damage using a variety of transplanted cells. We studied the repair and regeneration of cartilage damage using layered chondrocyte sheets prepared on a temperature-responsive culture dish. We previously reported achieving robust tissue repair when covering only the surface layer with layered chondrocyte sheets when researching partial-thickness defects in the articular cartilage of domestic rabbits. The present study was an experiment on the repair and regeneration of articular cartilage in a minipig model of full-thickness defects. Good safranin-O staining and integration with surrounding tissues was achieved in animals transplanted with layered chondrocyte sheets. However, tissue having poor safranin-O staining-not noted in the domestic rabbit experiments-was identified in some of the animals, and the subchondral bone was poorly repaired in these. Thus, although layered chondrocyte sheets facilitate articular cartilage repair, further investigations into appropriate animal models and culture and transplant conditions are required. Copyright Â
© 2012 Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 22369960     DOI: 10.1016/j.biomaterials.2012.01.056

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


  40 in total

1.  Repair mechanism of osteochondral defect promoted by bioengineered chondrocyte sheet.

Authors:  Ryo Shimizu; Naosuke Kamei; Nobuo Adachi; Michio Hamanishi; Goki Kamei; Elhussein Elbadry Mahmoud; Tomohiro Nakano; Takanori Iwata; Masayuki Yamato; Teruo Okano; Mitsuo Ochi
Journal:  Tissue Eng Part A       Date:  2014-12-29       Impact factor: 3.845

2.  Mesenchymal stem cell-derived extracellular matrix enhances chondrogenic phenotype of and cartilage formation by encapsulated chondrocytes in vitro and in vivo.

Authors:  Yuanheng Yang; Hang Lin; He Shen; Bing Wang; Guanghua Lei; Rocky S Tuan
Journal:  Acta Biomater       Date:  2018-01-06       Impact factor: 8.947

3.  Next Generation Mesenchymal Stem Cell (MSC)-Based Cartilage Repair Using Scaffold-Free Tissue Engineered Constructs Generated with Synovial Mesenchymal Stem Cells.

Authors:  Kazunori Shimomura; Wataru Ando; Yu Moriguchi; Norihiko Sugita; Yukihiko Yasui; Kota Koizumi; Hiromichi Fujie; David A Hart; Hideki Yoshikawa; Norimasa Nakamura
Journal:  Cartilage       Date:  2015-03-24       Impact factor: 4.634

Review 4.  Emergence of scaffold-free approaches for tissue engineering musculoskeletal cartilages.

Authors:  Grayson D DuRaine; Wendy E Brown; Jerry C Hu; Kyriacos A Athanasiou
Journal:  Ann Biomed Eng       Date:  2014-10-21       Impact factor: 3.934

5.  The effect of a gelatin β-tricalcium phosphate sponge loaded with mesenchymal stem cells (MSC), bone morphogenic protein-2, and platelet-rich plasma (PRP) on equine articular cartilage defect.

Authors:  Nao Tsuzuki; Jong-pil Seo; Kazutaka Yamada; Shingo Haneda; Hidefumi Furuoka; Yasuhiko Tabata; Naoki Sasaki
Journal:  Can Vet J       Date:  2013-06       Impact factor: 1.008

6.  Regenerating cartilages by engineered ASCs: prolonged TGF-β3/BMP-6 expression improved articular cartilage formation and restored zonal structure.

Authors:  Chia-Hsin Lu; Tsung-Szu Yeh; Chia-Lin Yeh; Yu-Hua Dean Fang; Li-Yu Sung; Shih-Yeh Lin; Tzu-Chen Yen; Yu-Han Chang; Yu-Chen Hu
Journal:  Mol Ther       Date:  2013-07-15       Impact factor: 11.454

7.  A Road Map to Commercialization of Cartilage Therapy in the United States of America.

Authors:  BanuPriya Sridharan; Blanka Sharma; Michael S Detamore
Journal:  Tissue Eng Part B Rev       Date:  2015-11-05       Impact factor: 6.389

8.  Effects of Induction Culture on Osteogenesis of Scaffold-Free Engineered Tissue for Bone Regeneration Applications.

Authors:  Hye Min Park; Seon-Hwa Kim; Byung Hyune Choi; Sang-Hyug Park
Journal:  Tissue Eng Regen Med       Date:  2022-02-05       Impact factor: 4.169

9.  [Defect models for the regeneration of articular cartilage in large animals].

Authors:  B Schneider-Wald; A K von Thaden; M L R Schwarz
Journal:  Orthopade       Date:  2013-04       Impact factor: 1.087

10.  Multilineage-differentiating stress-enduring (Muse)-like cells exist in synovial tissue.

Authors:  Eriko Toyoda; Masato Sato; Takumi Takahashi; Miki Maehara; Yoshihiko Nakamura; Genya Mitani; Tomonori Takagaki; Kosuke Hamahashi; Masahiko Watanabe
Journal:  Regen Ther       Date:  2018-11-20       Impact factor: 3.419

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