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  • Bone substitution materials on the basis of BONITmatrix® up-regulate mRNA expression of IGF1 and Col1a1

    Author(s)
    Gredes, Tomasz
    Heinemann, Friedhelm
    Dominiak, Marzena
    Mack, Heike
    Gedrange, Tomasz
    Spassov, Alexander
    Klinke, Thomas
    Kunert-Keil, Christiane
    Griffith University Author(s)
    Mack, Heike H.
    Year published
    2012
    Metadata
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    Abstract
    The aim of this study was to investigate the effects of BONITmatrixnd OSSA NOVA on the expression of growth factors and osteogenic differentiation. For this purpose, the mRNA expression of VEGF, IGF1, IGF2, collagen-1, collagen-2 and MMP8 was analysed in surgically created defects on the crania of adult male rats. Cranial samples were collected after implantation of BONITmatrixr OSSA NOVA scaffolds for 4 weeks and determinations of gene expression were performed by quantitative RT-PCR. Real-time RT-PCR analyses showed a significantly higher expression of IGF1 in both groups treated with BONITmatrixnd OSSA NOVA compared ...
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    The aim of this study was to investigate the effects of BONITmatrixnd OSSA NOVA on the expression of growth factors and osteogenic differentiation. For this purpose, the mRNA expression of VEGF, IGF1, IGF2, collagen-1, collagen-2 and MMP8 was analysed in surgically created defects on the crania of adult male rats. Cranial samples were collected after implantation of BONITmatrixr OSSA NOVA scaffolds for 4 weeks and determinations of gene expression were performed by quantitative RT-PCR. Real-time RT-PCR analyses showed a significantly higher expression of IGF1 in both groups treated with BONITmatrixnd OSSA NOVA compared to untreated controls, whereas type I collagen mRNA expression only increased in BONITmatrixreated rats compared to controls. No changes in transcript expression of IGF2, VEGF, collagen-2 and MMP8 were detectable between the analysed groups. In conclusion, BONITmatrixnd OSSA NOVA stimulate the expression of growth factor IGF1, but only the granular dosage form is able to stimulate osteoblast differentiation.
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    Journal Title
    Annals of Anatomy
    Volume
    194
    Issue
    2
    DOI
    https://doi.org/10.1016/j.aanat.2011.10.003
    Subject
    Medical Physiology not elsewhere classified
    Medical Physiology
    Publication URI
    http://hdl.handle.net/10072/51995
    Collection
    • Journal articles

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