Literature DB >> 14564432

Subchondral bone reaction associated with chondral defect and attempted cartilage repair in goats.

A I Vasara1, M M Hyttinen, M J Lammi, P E Lammi, T K Långsjö, A Lindahl, L Peterson, M Kellomäki, Y T Konttinen, H J Helminen, I Kiviranta.   

Abstract

Repair of cartilage damage with autologous chondrocyte transplantation (ACT) has become popular in clinical use during the past few years. Although clinical results have mostly been successful, several unanswered questions remain regarding the biological mechanism of the repair process. The aim of this study was to develop a goat model for ACT. The repair was not successful due to the graft delamination, but we characterize the subchondral changes seen after the procedure. A chondral lesion was created in 14 goat knees, operated on 1 month later with ACT, and covered with periosteum or a bioabsorbable poly-L/D-lactide scaffold. After 3 months, only two of the five lesions repaired with ACT showed partly hyaline-like repair tissue, and all lesions (n = 4) with the scaffold failed. Even though the lesions did not extend through the calcified cartilage, the bone volume and collagen organization of bone structure were decreased when assessed by quantitative polarized light microscopy. There was a significant loss of bone matrix and distortion of the trabecular structure of subchondral bone, which extended several millimeters into the bone. The subchondral bone demonstrated strong hyaluronan staining in the bone marrow and cartilaginous areas with signs of endochondral ossification, suggesting structural remodeling of the bone. The goat model used here proved not to be an optimal model for ACT. The changes in subchondral bone may alter the biomechanical properties of the subchondral plate and thus the long-term survival of the repair tissue after ACT.

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Year:  2003        PMID: 14564432     DOI: 10.1007/s00223-002-2153-8

Source DB:  PubMed          Journal:  Calcif Tissue Int        ISSN: 0171-967X            Impact factor:   4.333


  18 in total

1.  Cartilage repair and subchondral bone remodeling in response to focal lesions in a mini-pig model: implications for tissue engineering.

Authors:  Matthew B Fisher; Nicole S Belkin; Andrew H Milby; Elizabeth A Henning; Marc Bostrom; Minwook Kim; Christian Pfeifer; Gregory Meloni; George R Dodge; Jason A Burdick; Thomas P Schaer; David R Steinberg; Robert L Mauck
Journal:  Tissue Eng Part A       Date:  2014-12-11       Impact factor: 3.845

2.  Age-Dependent Subchondral Bone Remodeling and Cartilage Repair in a Minipig Defect Model.

Authors:  Christian G Pfeifer; Matthew B Fisher; Vishal Saxena; Minwook Kim; Elizabeth A Henning; David A Steinberg; George R Dodge; Robert L Mauck
Journal:  Tissue Eng Part C Methods       Date:  2017-10-27       Impact factor: 3.056

3.  Fixation of Hydrogel Constructs for Cartilage Repair in the Equine Model: A Challenging Issue.

Authors:  Irina A D Mancini; Rafael A Vindas Bolaños; Harold Brommer; Miguel Castilho; Alexandro Ribeiro; Johannes P A M van Loon; Anneloes Mensinga; Mattie H P van Rijen; Jos Malda; René van Weeren
Journal:  Tissue Eng Part C Methods       Date:  2017-11       Impact factor: 3.056

4.  Comparison of Fixation Techniques of 3D-Woven Poly(ϵ-Caprolactone) Scaffolds for Cartilage Repair in a Weightbearing Porcine Large Animal Model.

Authors:  James M Friedman; Mackenzie L Sennett; Marcelo B Bonadio; Kerry O Orji; Alexander L Neuwirth; Niobra Keah; James L Carey; Franklin T Moutos; Bradley T Estes; Farshid Guilak; Henning Madry; Robert L Mauck; George R Dodge
Journal:  Cartilage       Date:  2017-04-11       Impact factor: 4.634

5.  Long term results after implantation of tissue engineered cartilage for the treatment of osteochondral lesions in a minipig model.

Authors:  J P Petersen; P Ueblacker; C Goepfert; P Adamietz; K Baumbach; A Stork; J M Rueger; R Poertner; M Amling; N M Meenen
Journal:  J Mater Sci Mater Med       Date:  2007-10-24       Impact factor: 3.896

6.  Cartilage repair with chondrocytes in fibrin hydrogel and MPEG polylactide scaffold: an in vivo study in goats.

Authors:  Martin Lind; Allan Larsen; Christian Clausen; Kurt Osther; Hanne Everland
Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2008-04-17       Impact factor: 4.342

7.  Effect of risedronate in a minipig cartilage defect model with allograft.

Authors:  Carol Muehleman; Jun Li; Yumiko Abe; Brian Pfister; Robert L Sah; Roger Phipps; Koichi Masuda
Journal:  J Orthop Res       Date:  2009-03       Impact factor: 3.494

8.  [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

9.  Activation of WNT and BMP signaling in adult human articular cartilage following mechanical injury.

Authors:  Francesco Dell'Accio; Cosimo De Bari; Noha M F El Tawil; Francesca Barone; Thimios A Mitsiadis; John O'Dowd; Costantino Pitzalis
Journal:  Arthritis Res Ther       Date:  2006       Impact factor: 5.156

10.  Cartilage repair and subchondral bone migration using 3D printing osteochondral composites: a one-year-period study in rabbit trochlea.

Authors:  Weijie Zhang; Qin Lian; Dichen Li; Kunzheng Wang; Dingjun Hao; Weiguo Bian; Jiankang He; Zhongmin Jin
Journal:  Biomed Res Int       Date:  2014-08-07       Impact factor: 3.411

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