Requirement of fibroblast growth factor signaling for regeneration of epiphyseal morphology in rabbit full‐thickness defects of articular cartilage
- 1 April 1997
- journal article
- Published by Wiley in Development, Growth & Differentiation
- Vol. 39 (2) , 143-156
- https://doi.org/10.1046/j.1440-169x.1997.t01-1-00003.x
Abstract
The involvement of fibroblast growth factor-2 (FGF-2) during the repair process in rabbit full-thickness defects of articular cartilage was studied. Fibroblast growth factor-2 (50 pg/h) was administered for 2 weeks in a 5 mm defect of articular cartilage, which is large enough not to repair spontaneously. The administration of FGF-2 resulted in the regeneration of the articular cartilage and the subchondral bone within 8 weeks. In these defects, undifferentiated mesenchymal cells initiated chondrogenic differentiation coupled with replacement by subchondral bone, resulting in the resurfacing of the defects with hyaline cartilage and the recovery of subchondral bone up to the original bone-articular cartilage junction. In rabbits, full-thickness defects are capable of regenerating articular cartilage as long as the defect size is limited to < or = 3 mm in diameter. In the defects, strong immunoreactivity for FGF-2 was observed in the granulation tissue filling the defects in the early stage of repair, in association with the expression of FGF-2 mRNA shown by in situ hybridization. Once the undifferentiated mesenchymal cells had differentiated into chondrocytes, both the immunoreactivity and the in situ hybridization signal declined significantly. Upon the local administration of a monoclonal antibody against FGF-2 (bFM-1, 50 ng/h), the defects were filled with fibrous tissue and no resurfacing hyaline cartilage was formed. Compared to the non-treated defects, there were marked increases in FGF-2 immunoreactivity and the overexpression of FGF-2 mRNA in the reparative tissue in the bFM-1-treated defects. This rebound phenomenon indicates that the autocrine FGF-2 signaling is critically important for the regeneration of articular cartilage.Keywords
This publication has 36 references indexed in Scilit:
- Inhibitory effects of basic fibroblast growth factor on chondrocyte differentiationJournal of Bone and Mineral Research, 1995
- Induction of growth plate cartilage ossification by basic fibroblast growth factorEndocrinology, 1994
- Analysis of autocrine growth regulators produced by chondrogenic fibroblasts of chick embryo sclera in protein-free primary culturesCell Proliferation, 1994
- Limb alterations in brachypodism mice due to mutations in a new member of the TGFβ-superfamilyNature, 1994
- Basic fibroblast growth factor and bone induction in ratsActa Orthopaedica, 1993
- A Semiquantitative Scale or Histologic Grading of Articular Cartilage RepairCells Tissues Organs, 1992
- Molecular and biological characterization of fibroblast growth factor, an angiogenic factor which also controls the proliferation and differentiation of mesoderm and neuroectoderm derived cellsCell Differentiation, 1986
- Differential localization of mRNAs of collagen types I and II in chick fibroblasts, chondrocytes, and corneal cells by in situ hybridization using cDNA probes.The Journal of cell biology, 1986
- Ultrastructural Observations on Surgically Produced Partial-thickness Defects in Articular CartilageClinical Orthopaedics and Related Research, 1972