Literature DB >> 8119125

Expression and functional involvement of N-cadherin in embryonic limb chondrogenesis.

S A Oberlender1, R S Tuan.   

Abstract

Cell adhesion molecules have been shown to be important mediators of morphogenesis and pattern formation. In this study, we have shown that N-cadherin is expressed in a specific spatiotemporal manner in the developing limb bud during chondrogenesis in vivo and in cultured limb mesenchyme in vitro. The time period of maximal expression of N-cadherin corresponds to the period of active cellular condensation, an event believed to be a necessary prerequisite for chondrogenic differentiation. To directly assess the functional involvement of N-cadherin in cellular condensation, we have examined the effects of perturbing N-cadherin activity on both cell aggregation and chondrogenesis using NCD-2, a rat monoclonal antibody directed against the binding region of N-cadherin. Non-immune rat IgG was used as a control. Our results show that functional N-cadherin is necessary for chondrogenesis to proceed both in vivo and in vitro. Limb mesenchymal cells exhibited characteristic Ca(2+)-dependent cell aggregation in suspension, which was inhibited in the presence of exogenous NCD-2. In micromass cultures of limb mesenchymal cells, NCD-2 inhibited overt chondrogenesis in a dose-dependent manner. Furthermore, NCD-2 inhibition of chondrogenesis in micromass cultures was time-dependent, suggesting that N-cadherin is crucially involved during the latter half of the first 24 hours of culture, a time period most likely corresponding to active cellular condensation. NCD-2 also significantly influenced limb development when injected into embryonic limb buds in vivo. In addition to significant inhibition of chondrogenesis and developmental delays, gross developmental deformities and perturbation of overall pattern formation were also observed. Taken together, these results demonstrate that N-cadherin is functionally required in mediating the cell-cell interactions among mesenchymal cells important for chondrogenesis in micromass culture in vitro and in the intact limb bud in vivo.

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Year:  1994        PMID: 8119125     DOI: 10.1242/dev.120.1.177

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  88 in total

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2.  Dynamical mechanisms for skeletal pattern formation in the vertebrate limb.

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4.  On multiscale approaches to three-dimensional modelling of morphogenesis.

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5.  Compaction, fusion, and functional activation of three-dimensional human mesenchymal stem cell aggregate.

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6.  Involvement of Notch signaling in initiation of prechondrogenic condensation and nodule formation in limb bud micromass cultures.

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Review 7.  Regulation of chondrogenesis and chondrocyte differentiation by stress.

Authors:  Michael J Zuscik; Matthew J Hilton; Xinping Zhang; Di Chen; Regis J O'Keefe
Journal:  J Clin Invest       Date:  2008-02       Impact factor: 14.808

8.  Cultivation of human tenocytes in high-density culture.

Authors:  G Schulze-Tanzil; A Mobasheri; P D Clegg; J Sendzik; T John; M Shakibaei
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9.  Stem cell shape regulates a chondrogenic versus myogenic fate through Rac1 and N-cadherin.

Authors:  Lin Gao; Rowena McBeath; Christopher S Chen
Journal:  Stem Cells       Date:  2010-03-31       Impact factor: 6.277

10.  Unique modulation of cadherin expression pattern during posterior frontal cranial suture development and closure.

Authors:  David E Sahar; Björn Behr; Kenton D Fong; Michael T Longaker; Natalina Quarto
Journal:  Cells Tissues Organs       Date:  2009-12-24       Impact factor: 2.481

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