Literature DB >> 9497803

Chondrogenic phenotype of perichondrium-derived chondroprogenitor cells is influenced by transforming growth factor-beta 1.

J S Dounchis1, R S Goomer, F L Harwood, M Khatod, R D Coutts, D Amiel.   

Abstract

Our laboratory has developed a method for the repair of osteochondral defects by implanting cultured perichondrial cells attached to a biodegradable polylactic acid scaffold. The success of this approach depends in part on the proliferative characteristics and the phenotype of the implanted cells. Transforming growth factor-beta 1 has been reported to influence these parameters in several mesenchymal-derived tissues in vitro and in vivo. The chondrocytic phenotype is marked by an enhanced expression of the collagen type-II gene. In this study, cultures grown from explants of rabbit rib perichondrium were exposed to exogenously added transforming growth factor-beta 1 at concentrations of 0.1-10 ng/ml of media. Cell proliferation and collagen gene expression were measured. The expression of types I and II collagen genes was analyzed by Northern blot and reverse transcriptase-polymerase chain reaction. The exogenous addition of transforming growth factor-beta 1 at a concentration of 0.1-10 ng/ml resulted in tritiated thymidine uptake by perichondrial cells, with optimum proliferative effects at 0.1 ng/ml. Transforming growth factor-beta 1 added at concentrations of 0.1 and 0.5 ng/ml significantly upregulated the expression of type-II collagen mRNAs. The results suggest that, when the chondrocytic phenotype is defined by markedly enhanced type-II collagen gene expression, the chondrocytic phenotype of explant cultures of perichondrium-derived cells is enhanced by the exogenous addition of transforming growth factor-beta 1.

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Year:  1997        PMID: 9497803     DOI: 10.1002/jor.1100150603

Source DB:  PubMed          Journal:  J Orthop Res        ISSN: 0736-0266            Impact factor:   3.494


  5 in total

1.  Transforming growth factor beta one (TGF-beta 1) enhancement of the chondrocytic phenotype in aged perichondrial cells: an in vitro study.

Authors:  M C Lee; R S Goomer; K Takahashi; F L Harwood; M Amiel; D Amiel
Journal:  Iowa Orthop J       Date:  2000

2.  Supramolecular design of self-assembling nanofibers for cartilage regeneration.

Authors:  Ramille N Shah; Nirav A Shah; Marc M Del Rosario Lim; Caleb Hsieh; Gordon Nuber; Samuel I Stupp
Journal:  Proc Natl Acad Sci U S A       Date:  2010-02-01       Impact factor: 11.205

Review 3.  Chondrogenic differentiation of mesenchymal stem cells: challenges and unfulfilled expectations.

Authors:  Rodrigo A Somoza; Jean F Welter; Diego Correa; Arnold I Caplan
Journal:  Tissue Eng Part B Rev       Date:  2014-05-27       Impact factor: 6.389

4.  Clinical aspects and strategy for biomaterial engineering of an auricle based on three-dimensional stereolithography.

Authors:  A Naumann; J Aigner; R Staudenmaier; M Seemann; R Bruening; K H Englmeier; G Kadegge; A Pavesio; E Kastenbauer; A Berghaus
Journal:  Eur Arch Otorhinolaryngol       Date:  2003-06-26       Impact factor: 2.503

Review 5.  Strategies to Convert Cells into Hyaline Cartilage: Magic Spells for Adult Stem Cells.

Authors:  Anastasiia D Kurenkova; Irina A Romanova; Pavel D Kibirskiy; Peter Timashev; Ekaterina V Medvedeva
Journal:  Int J Mol Sci       Date:  2022-09-22       Impact factor: 6.208

  5 in total

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