Cytoskeleton of cartilage cells
- 1 August 1994
- journal article
- review article
- Published by Wiley in Microscopy Research and Technique
- Vol. 28 (5), 372-377
- https://doi.org/10.1002/jemt.1070280503
Abstract
The cytoskeleton of chondrocytes consists of microfilaments made of actin, microtubules made of tubulin, and intermediate filaments made of a variety of subunits. Actin filaments are not prominent in vivo but may form in vitro. In culture, changes in filament polymerisation are important in determining cell shape, initiating chondrogenesis, and maintaining the chondrogenic phenotype. Microtubules, besides their role in cell division, organise the distribution of organelles and are involved in secretory transport mechanisms in collagen and proteoglycan synthesis. A variety of intermediate filaments may be present, frequently forming large whorled aggregates. The filaments include vimentin, cytokeratins, and glial fibrillary acidic protein. These may occur at different depths in articular cartilage. Vimentin accumulates during development of some fibrocartilages with increased mechanical loading. Together with other elements of the cytoskeleton, intermediate filaments could form part of a mechanotransduction system by which cells respond to external forces and sense changes in their external environment.Keywords
This publication has 67 references indexed in Scilit:
- Dihydrocytochalasin B Enhances Transforming Growth Factor-β-Induced Reexpression of the Differentiated Chondrocyte Phenotype without Stimulation of Collagen SynthesisExperimental Cell Research, 1993
- The lipoxygenase metabolite 12(S)‐hete induces a cytoskeleton‐dependent increase in surface expression of integrin αiibβ3 on melanoma cellsInternational Journal of Cancer, 1991
- The internal affairs of an integrinTrends in Cell Biology, 1991
- Detection of GFAP in vertebral fibrocartilage in human fetal and newborntissueActa Histochemica, 1990
- Transient expression of simple epithelial keratins by mesenchymal cells of regenerating newt limbDevelopmental Biology, 1989
- Cartilage Stem Cells: Regulation of DifferentiationConnective Tissue Research, 1989
- Microfilament modification by dihydrocytochalasin B causes retinoic acid-modulated chondrocytes to reexpress the differentiated collagen phenotype without a change in shape.The Journal of cell biology, 1988
- Alterations in chondrocyte cytoskeletal architecture during phenotypic modulation by retinoic acid and dihydrocytochalasin B-induced reexpression.The Journal of cell biology, 1988
- Chondrogenesis from single limb mesenchyme cellsDevelopmental Biology, 1982
- Cytoplasmic filaments associated with lipid droplets in chondrocytes of the rat auricular cartilageCellular and Molecular Life Sciences, 1975