Literature DB >> 18803234

In vitro differentiation of human calvarial suture derived cells with and without dexamethasone does not induce in vivo-like expression.

Anna K Coussens1, Ian P Hughes, C Phillip Morris, Barry C Powell, Peter J Anderson.   

Abstract

Osteogenic supplements are a requirement for osteoblastic cell differentiation during in vitro culture of human calvarial suture-derived cell populations. We investigated the ability of ascorbic acid and beta-glycerophosphate with and without the addition of dexamethasone to stimulate in vivo-like osteoblastic differentiation. Cells were isolated from unfused and prematurely fused suture tissue from patients with syndromic and non-syndromic craniosynostosis and cultured in each osteogenic medium for varying lengths of time. The effect of media supplementation was investigated with respect to the ability of cells to form mineralised bone nodules and the expression of five osteodifferentiation marker genes (COL1A1, ALP, BSP, OC and RUNX2), and five genes that are differentially expressed during human premature suture fusion (GPC3, RBP4, C1QTNF3, WIF1 and FGF2). Cells from unfused sutures responded more slowly to osteogenic media but formed comparable bone nodules to fused suture-derived cells after 16 days of culture in either osteogenic media. However, gene expression differed between unfused and fused suture-derived cells, as did expression in each osteogenic medium. When compared to expression in the explant tissue of origin, neither medium induced a level or profile of gene expression similar to that seen in vivo. Overall, our results demonstrate that cells from the same suture that are isolated during different stages of morphogenesis in vivo, despite being de-differentiated to a similar level in vitro, respond uniquely and differently to each osteogenic medium. Further, we suggest that neither cell culture medium recapitulates differentiation via activation of the same genetic cascades as occurs in vivo. (c) 2008 Wiley-Liss, Inc.

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Year:  2009        PMID: 18803234     DOI: 10.1002/jcp.21586

Source DB:  PubMed          Journal:  J Cell Physiol        ISSN: 0021-9541            Impact factor:   6.384


  6 in total

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2.  BBS9 gene in nonsyndromic craniosynostosis: Role of the primary cilium in the aberrant ossification of the suture osteogenic niche.

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Journal:  Bone       Date:  2018-04-17       Impact factor: 4.398

3.  Ex Vivo Culture of Human Cranial Suture Cells.

Authors:  Peter J Anderson
Journal:  Methods Mol Biol       Date:  2022

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Journal:  Cell Prolif       Date:  2013-04       Impact factor: 6.831

5.  Polycystin-1 regulates cell proliferation and migration through AKT/mTORC2 pathway in a human craniosynostosis cell model.

Authors:  Maria A Katsianou; Kostas A Papavassiliou; Antonios N Gargalionis; George Agrogiannis; Penelope Korkolopoulou; Dimitrios Panagopoulos; Marios S Themistocleous; Christina Piperi; Efthimia K Basdra; Athanasios G Papavassiliou
Journal:  J Cell Mol Med       Date:  2022-03-13       Impact factor: 5.310

6.  Development of an efficient, non-viral transfection method for studying gene function and bone growth in human primary cranial suture mesenchymal cells reveals that the cells respond to BMP2 and BMP3.

Authors:  Prem P Dwivedi; Peter J Anderson; Barry C Powell
Journal:  BMC Biotechnol       Date:  2012-08-03       Impact factor: 2.563

  6 in total

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