Literature DB >> 10589398

Cranial suture obliteration is induced by removal of transforming growth factor (TGF)-beta 3 activity and prevented by removal of TGF-beta 2 activity from fetal rat calvaria in vitro.

L A Opperman1, A Chhabra, R W Cho, R C Ogle.   

Abstract

Cranial suture morphogenesis requires soluble, heparin-binding factors secreted by the dura mater to resist premature osseous obliteration. Elevated levels of transforming growth factor (TGF)-beta 1, TGF-beta 2, and TGF-beta 3 have previously been noted in cranial sutures undergoing normal and premature sutural obliteration. To examine the role of TGF-beta s in regulating cranial suture morphogenesis, an established in vitro, serum-free, calvarial culture system was used. In this system, fetal rat coronal sutures undergo apparently normal suture morphogenesis in the presence of dura mater, but undergo osseous obliteration in the absence of dura mater. Neutralizing polyclonal antibodies to TGF-beta 1, TGF-beta 2, or TGF-beta 3 were added to cultures of fetal day 19 rat calvaria, which were harvested at 3, 4, or 5 days, processed for histology, sectioned, and examined. Coronal sutures from calvaria cultured in the presence of dura mater resisted obliteration, either alone or in the presence of TGF-beta 1 or TGF-beta 2 neutralizing antibodies. However, sutures from calvaria cultured in the presence of TGF-beta 3 neutralizing antibodies became obliterated. Conversely, sutures from calvaria cultured in the absence of dura mater became obliterated by bone, either alone or in the presence of neutralizing antibodies to TGF-beta 1 or TGF-beta 3. However, those sutures cultured in the presence of neutralizing antibodies to TGF-beta 2 were rescued from osseous obliteration.

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Year:  1999        PMID: 10589398

Source DB:  PubMed          Journal:  J Craniofac Genet Dev Biol        ISSN: 0270-4145


  20 in total

1.  Tissue interactions between craniosynostotic dura mater and bone.

Authors:  Gregory M Cooper; Emily L Durham; James J Cray; Michael I Siegel; Joseph E Losee; Mark P Mooney
Journal:  J Craniofac Surg       Date:  2012-05       Impact factor: 1.046

2.  FTY720 promotes local microvascular network formation and regeneration of cranial bone defects.

Authors:  Caren E Petrie Aronin; Lauren S Sefcik; Sunil S Tholpady; Ashok Tholpady; Karim W Sadik; Timothy L Macdonald; Shayn M Peirce; Brian R Wamhoff; Kevin R Lynch; Roy C Ogle; Edward A Botchwey
Journal:  Tissue Eng Part A       Date:  2010-06       Impact factor: 3.845

Review 3.  Mechanical influences on suture development and patency.

Authors:  Susan W Herring
Journal:  Front Oral Biol       Date:  2008

Review 4.  The role of vertebrate models in understanding craniosynostosis.

Authors:  Greg Holmes
Journal:  Childs Nerv Syst       Date:  2012-08-08       Impact factor: 1.475

5.  A bidirectional interface growth model for cranial interosseous suture morphogenesis.

Authors:  Christoph P E Zollikofer; John David Weissmann
Journal:  J Anat       Date:  2011-05-04       Impact factor: 2.610

6.  Comparison of craniofacial phenotype in craniosynostotic rabbits treated with anti-Tgf-beta2 at suturectomy site.

Authors:  Brenda C Frazier; Mark P Mooney; H Wolfgang Losken; Tim Barbano; Amr Moursi; Michael I Siegel; Joan T Richtsmeier
Journal:  Cleft Palate Craniofac J       Date:  2007-12-31

Review 7.  Craniosynostosis: molecular pathways and future pharmacologic therapy.

Authors:  Kshemendra Senarath-Yapa; Michael T Chung; Adrian McArdle; Victor W Wong; Natalina Quarto; Michael T Longaker; Derrick C Wan
Journal:  Organogenesis       Date:  2012-10-01       Impact factor: 2.500

8.  Rapid re-synostosis following suturectomy in pediatric mice is age and location dependent.

Authors:  Christopher D Hermann; Kelsey Lawrence; Rene Olivares-Navarrete; Joseph K Williams; Robert E Guldberg; Barbara D Boyan; Zvi Schwartz
Journal:  Bone       Date:  2012-11-28       Impact factor: 4.398

9.  Twist1 homodimers enhance FGF responsiveness of the cranial sutures and promote suture closure.

Authors:  Jeannette Connerney; Viktoria Andreeva; Yael Leshem; Miguel A Mercado; Karen Dowell; Xuehei Yang; Volkhard Lindner; Robert E Friesel; Douglas B Spicer
Journal:  Dev Biol       Date:  2008-04-08       Impact factor: 3.582

10.  Inhibition of osteogenic differentiation of human mesenchymal stem cells.

Authors:  Eduardo K Moioli; Liu Hong; Jeremy J Mao
Journal:  Wound Repair Regen       Date:  2007 May-Jun       Impact factor: 3.617

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