Search Results - "Petite, H."

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  1. 1

    Evaluation of extruded starch foam for glucose-supplying biomaterials by Lescher, A., Kansou, K., Della Valle, G., Petite, H., Lourdin, D.

    Published in Carbohydrate polymers (15-09-2024)
    “…The survival rate of mesenchymal stem cells (MSC), a crucial factor in tissue engineering, is highly dependent on glucose supply. The purpose of this paper is…”
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    Journal Article
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    Human mesenchymal stem cell responses to hydrostatic pressure and shear stress by Becquart, P, Cruel, M, Hoc, T, Sudre, L, Pernelle, K, Bizios, R, Logeart-Avramoglou, D, Petite, H, Bensidhoum, M

    Published in European cells & materials (19-02-2016)
    “…The effects of mechanical stimuli to which cells are exposed in vivo are, at best, incompletely understood; in this respect, gene-level information regarding…”
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    Journal Article
  3. 3

    Survival and function of mesenchymal stem cells (MSCs) depend on glucose to overcome exposure to long‐term, severe and continuous hypoxia by Deschepper, M., Oudina, K., David, B., Myrtil, V., Collet, C., Bensidhoum, M., Logeart‐Avramoglou, D., Petite, H.

    Published in Journal of cellular and molecular medicine (01-07-2011)
    “…Use of mesenchymal stem cells (MSCs) has emerged as a potential new treatment for various diseases but has generated marginally successful results. A…”
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    Journal Article
  4. 4

    Engineering bone: challenges and obstacles by Logeart‐Avramoglou, D., Anagnostou, F., Bizios, R., Petite, H.

    Published in Journal of cellular and molecular medicine (01-01-2005)
    “…Repair of large bone defects is still a challenge for the orthopaedic, reconstructive and maxillo‐facial surgeon. Availability of pluripotent stem cells from…”
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    Journal Article
  5. 5

    A biodegradable fibrin scaffold for mesenchymal stem cell transplantation by Bensaı̈d, W, Triffitt, J.T, Blanchat, C, Oudina, K, Sedel, L, Petite, H

    Published in Biomaterials (01-06-2003)
    “…A potential therapy to enhance healing of bone tissue is to deliver isolated mesenchymal stem cells (MSCs) to the site of a lesion to promote bone formation. A…”
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    Journal Article
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    Tissue-engineered bone regeneration by Petite, Herve, Viateau, Veronique, Bensaïd, Wassila, Meunier, Alain, de Pollak, Cindy, Bourguignon, Marianne, Oudina, Karim, Sedel, Laurent, Guillemin, Genevieve

    Published in Nature biotechnology (01-09-2000)
    “…Bone lesions above a critical size become scarred rather than regenerated, leading to nonunion. We have attempted to obtain a greater degree of regeneration by…”
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    Journal Article
  7. 7

    PolyNaSS grafting on titanium surfaces enhances osteoblast differentiation and inhibits Staphylococcus aureus adhesion by Alcheikh, A., Pavon-Djavid, G., Helary, G., Petite, H., Migonney, V., Anagnostou, F.

    “…Titanium surface modifications to simultaneously prevent bacterial adhesion but promote bone-cell functions could be highly beneficial for improving implant…”
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    Journal Article
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    Vertical bone regeneration with deproteinised bovine bone mineral or biphasic calcium phosphate in the rabbit calvarium: effect of autologous platelet lysate by Chakar, C., Soffer, E., Cohen, N., Petite, H., Naaman, N., Anagnostou, F.

    “…Although bone substitutes associated with platelet concentrates are widely used to vertically reconstruct alveolar ridges, their respective and specific…”
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    Journal Article
  10. 10

    Strategies for improving the efficacy of bioengineered bone constructs: a perspective by Petite, H., Vandamme, K., Monfoulet, L., Logeart-Avramoglou, D.

    Published in Osteoporosis international (01-06-2011)
    “…Bioengineered bone scaffolds are intended for use in large bone defects. Successful bone constructs should stimulate and support both the onset and the…”
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    Journal Article Conference Proceeding
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    Optimization of a gene electrotransfer method for mesenchymal stem cell transfection by Ferreira, E, Potier, E, Logeart-Avramoglou, D, Salomskaite-Davalgiene, S, Mir, L M, Petite, H

    Published in Gene therapy (01-04-2008)
    “…Gene electrotransfer is an efficient and reproducible nonviral gene transfer technique useful for the nonpermanent expression of therapeutic transgenes. The…”
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    Journal Article
  12. 12

    Allograft integration in a rabbit transgenic model for anterior cruciate ligament reconstruction by Bachy, M, Sherifi, I, Zadegan, F, Petite, H, Vialle, R, Hannouche, D

    “…Abstract Background Tissue engineering strategies include both cell-based and cell homing therapies. Ligamentous tissues are highly specialized and constitute…”
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    Journal Article
  13. 13

    A comparative study of tissue-engineered constructs from Acropora and Porites coral in a large animal bone defect model by Decambron, A, Manassero, M, Bensidhoum, M, Lecuelle, B, Logeart-Avramoglou, D, Petite, H, Viateau, V

    Published in Bone & joint research (01-04-2017)
    “…To compare the therapeutic potential of tissue-engineered constructs (TECs) combining mesenchymal stem cells (MSCs) and coral granules from either or to repair…”
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    Journal Article
  14. 14

    An assay for the determination of biologically active bone morphogenetic proteins using cells transfected with an inhibitor of differentiation promoter-luciferase construct by Logeart-Avramoglou, D., Bourguignon, M., Oudina, K., Ten Dijke, P., Petite, H.

    Published in Analytical biochemistry (01-02-2006)
    “…Bone morphogenetic proteins (BMPs) control cell fate by regulating gene expression, especially inhibitor of differentiation (Id) genes. This property has been…”
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    Journal Article
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    Sustained and promoter dependent bone morphogenetic protein expression by rat mesenchymal stem cells after BMP-2 transgene electrotransfer by Ferreira, E, Potier, E, Vaudin, P, Oudina, K, Bensidhoum, M, Logeart-Avramoglou, D, Mir, L M, Petite, H

    Published in European cells & materials (09-07-2012)
    “…Transplantation of mesenchymal stem cells (MSCs) with electrotransferred bone morphogenetic protein-2 (BMP-2) transgene is an attractive therapeutic modality…”
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    Journal Article
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    Embedding of Bone Samples in Methylmethacrylate: A Suitable Method for Tracking LacZ Mesenchymal Stem Cells in Skeletal Tissues by Hannouche, D., Raould, A., Nizard, R.S., Sedel, L., Petite, H.

    “…Considerable research has been focused on the use of bone marrow-derived mesenchymal stem cells (MSCs) for the repair of non-unions and bone defects. To date,…”
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    Journal Article