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Phenotypic Characterization of Immortalized Chondrocytes from a Desbuquois Dysplasia Type 1 Mouse Model: A Tool for Studying Defects in Glycosaminoglycan Biosynthesis.

Abstract
The complexity of skeletal pathologies makes use of in vivo models essential to elucidate the pathogenesis of the diseases; nevertheless, chondrocyte and osteoblast cell lines provide relevant information on the underlying disease mechanisms. Due to the limitations of primary chondrocytes, immortalized cells represent a unique tool to overcome this problem since they grow very easily for several passages. However, in the immortalization procedure the cells might lose the original phenotype; thus, these cell lines should be deeply characterized before their use. We immortalized primary chondrocytes from a Cant1 knock-out mouse, an animal model of Desbuquois dysplasia type 1, with a plasmid expressing the SV40 large and small T antigen. This cell line, based on morphological and biochemical parameters, showed preservation of the chondrocyte phenotype. In addition reduced proteoglycan synthesis and oversulfation of glycosaminoglycan chains were demonstrated, as already observed in primary chondrocytes from the Cant1 knock-out mouse. In conclusion, immortalized Cant1 knock-out chondrocytes maintained the disease phenotype observed in primary cells validating the in vitro model and providing an additional tool to further study the proteoglycan biosynthesis defect. The same approach might be extended to other cartilage disorders.
AuthorsChiara Gramegna Tota, Beatrice Valenti, Antonella Forlino, Antonio Rossi, Chiara Paganini
JournalInternational journal of molecular sciences (Int J Mol Sci) Vol. 22 Issue 17 (Aug 27 2021) ISSN: 1422-0067 [Electronic] Switzerland
PMID34502207 (Publication Type: Journal Article)
Chemical References
  • Glycosaminoglycans
  • Acid Anhydride Hydrolases
  • Cant1 protein, mouse
Topics
  • Acid Anhydride Hydrolases (physiology)
  • Animals
  • Cell Line, Transformed
  • Chondrocytes (metabolism, pathology)
  • Craniofacial Abnormalities (etiology, metabolism, pathology)
  • Dwarfism (etiology, metabolism, pathology)
  • Glycosaminoglycans (metabolism)
  • Joint Instability (etiology, metabolism, pathology)
  • Mice
  • Mice, Inbred C57BL
  • Mice, Knockout
  • Ossification, Heterotopic (etiology, metabolism, pathology)
  • Phenotype
  • Polydactyly (etiology, metabolism, pathology)

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