Centre de Documentation Campus Montignies
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Votre centre de documentation sera exceptionnellement fermé de 12h30 à 13h ce lundi 18 novembre.
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Lundi : 8h-18h30
Mardi : 8h-17h30
Mercredi 9h-16h30
Jeudi : 8h30-18h30
Vendredi : 8h30-12h30 et 13h-14h30
Votre centre de documentation sera exceptionnellement fermé de 12h30 à 13h ce lundi 18 novembre.
Egalement, il sera fermé de 12h30 à 13h30 ce mercredi 20 novembre.
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Détail de l'auteur
Auteur Claire Vinatier |
Documents disponibles écrits par cet auteur
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Cartilage tissue engineering: From biomaterials and stem cells to osteoarthritis treatments / Claire Vinatier in Annals of physical and rehabilitation medicine, Vol. 59, n° 3 (June 2016)
[article]
Titre : Cartilage tissue engineering: From biomaterials and stem cells to osteoarthritis treatments Type de document : texte imprimé Auteurs : Claire Vinatier, Auteur ; Jérôme Guicheux, Auteur Année de publication : 2016 Article en page(s) : p. 139-144 Langues : Anglais (eng) Français (fre) Mots-clés : Tissu Arthrose Cellule Biomatériau Cartilage tissue engineering,Osteoarthritis,Stem cells,Biomaterials Résumé : Articular cartilage is a non-vascularized and poorly cellularized connective tissue that is frequently damaged as a result of trauma and degenerative joint diseases such as osteoarthrtis. Because of the absence of vascularization, articular cartilage has low capacity for spontaneous repair. Today, and despite a large number of preclinical data, no therapy capable of restoring the healthy structure and function of damaged articular cartilage is clinically available. Tissue-engineering strategies involving the combination of cells, scaffolding biomaterials and bioactive agents have been of interest notably for the repair of damaged articular cartilage. During the last 30 years, cartilage tissue engineering has evolved from the treatment of focal lesions of articular cartilage to the development of strategies targeting the osteoarthritis process. In this review, we focus on the different aspects of tissue engineering applied to cartilage engineering. We first discuss cells, biomaterials and biological or environmental factors instrumental to the development of cartilage tissue engineering, then review the potential development of cartilage engineering strategies targeting new emerging pathogenic mechanisms of osteoarthritis. Permalink : ./index.php?lvl=notice_display&id=45207
in Annals of physical and rehabilitation medicine > Vol. 59, n° 3 (June 2016) . - p. 139-144[article] Cartilage tissue engineering: From biomaterials and stem cells to osteoarthritis treatments [texte imprimé] / Claire Vinatier, Auteur ; Jérôme Guicheux, Auteur . - 2016 . - p. 139-144.
Langues : Anglais (eng) Français (fre)
in Annals of physical and rehabilitation medicine > Vol. 59, n° 3 (June 2016) . - p. 139-144
Mots-clés : Tissu Arthrose Cellule Biomatériau Cartilage tissue engineering,Osteoarthritis,Stem cells,Biomaterials Résumé : Articular cartilage is a non-vascularized and poorly cellularized connective tissue that is frequently damaged as a result of trauma and degenerative joint diseases such as osteoarthrtis. Because of the absence of vascularization, articular cartilage has low capacity for spontaneous repair. Today, and despite a large number of preclinical data, no therapy capable of restoring the healthy structure and function of damaged articular cartilage is clinically available. Tissue-engineering strategies involving the combination of cells, scaffolding biomaterials and bioactive agents have been of interest notably for the repair of damaged articular cartilage. During the last 30 years, cartilage tissue engineering has evolved from the treatment of focal lesions of articular cartilage to the development of strategies targeting the osteoarthritis process. In this review, we focus on the different aspects of tissue engineering applied to cartilage engineering. We first discuss cells, biomaterials and biological or environmental factors instrumental to the development of cartilage tissue engineering, then review the potential development of cartilage engineering strategies targeting new emerging pathogenic mechanisms of osteoarthritis. Permalink : ./index.php?lvl=notice_display&id=45207 Exemplaires (1)
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