Scinovex
article Open AccessTop 1% cited

The control of chondrogenesis

Journal of Cellular Biochemistry · 2005 · Vol. 97(1) · pp. 33–44
Mary B. GoldringKaneyuki TsuchimochiKosei Ijiri

Abstract

Chondrogenesis is the earliest phase of skeletal development, involving mesenchymal cell recruitment and migration, condensation of progenitors, and chondrocyte differentiation, and maturation and resulting in the formation of cartilage and bone during endochondral ossification. This process is controlled exquisitely by cellular interactions with the surrounding matrix, growth and differentiation factors, and other environmental factors that initiate or suppress cellular signaling pathways and transcription of specific genes in a temporal-spatial manner. Vertebrate limb development is controlled by interacting patterning systems involving prominently the fibroblast growth factor (FGF), bone morphogenetic protein (BMP), and hedgehog pathways. Both positive and negative signaling kinases and transcription factors, such as Sox9 and Runx2, and interactions among them determine whether the differentiated chondrocytes remain within cartilage elements in articular joints or undergo hypertrophic maturation prior to ossification. The latter process requires extracellular matrix remodeling and vascularization controlled by mechanisms that are not understood completely. Recent work has revealed novel roles for mediators such as GADD45beta, transcription factors of the Dlx, bHLH, leucine zipper, and AP-1 families, and the Wnt/beta-catenin pathway that interact at different stages during chondrogenesis.

TGF-β signaling in diseasesBone Metabolism and DiseasesConnective Tissue Growth Factor ResearchChondrogenesisEndochondral ossificationCell biologyRUNX2ChondrocyteIndian hedgehogWnt signaling pathwayBiologyTranscription factorFibroblast growth factor

MeSH terms

AnimalsBone DevelopmentCartilageCell DifferentiationHumansCell Proliferation

Funding

  • Vedecká Grantová Agentúra MŠVVaŠ SR a SAV
  • National Institutes of Health
Citations
1,048
FWCI
14.25
field-weighted impact
References
110
Percentile
99%
vs. same field & year
Citations per year
Cited by
The Role of Growth Factors in Cartilage Repair
Clinical Orthopaedics and Related Research · 2011 · 629 citations
Osteoarthritis
Journal of Cellular Physiology · 2007 · 1,136 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.