Sanchez, Christelle ; Université de Liège - ULiège > Département des sciences de la motricité > Unité de recherche sur l'os et le cartillage (U.R.O.C.)
Ochi M., Uchio Y., Tobita M., et al. Current concepts in tissue engineering technique for repair of cartilage defect. Artif Organs 2001, 25:172-179.
Frenkel S.R., Di Cesare P.E. Scaffolds for articular cartilage repair. Ann Biomed Eng 2004, 32:26-34.
Knudson W., Casey B., Nishida Y., et al. Hyaluronan oligosaccharides perturb cartilage matrix homeostasis and induce chondrocytic chondrolysis. Arthritis Rheum 2000, 43:1165-1174.
Temenoff J.S., Athanasiou K.A., LeBaron R.G., et al. Effect of poly(ethylene glycol) molecular weight on tensile and swelling properties of oligo(poly(ethylene glycol) fumarate) hydrogels for cartilage tissue engineering. J Biomed Mater Res 2002, 59:429-437.
Vinatier C., Guicheux J., Daculsi G., et al. Cartilage and bone tissue engineering using hydrogels. Biomed Mater Eng 2006, 16:S107-S113.
Betre H., Ong S.R., Guilak F., et al. Chondrocytic differentiation of human adipose-derived adult stem cells in elastin-like polypeptide. Biomaterials 2005, 13.
Freed L.E., Marquis J.C., Nohria A., et al. Neocartilage formation in vitro and in vivo using cells cultured on synthetic biodegradable polymers. J Biomed Mater Res 1993, 27:11-23.
Kus W.M., Gorecki A., Strzelczyk P., et al. Carbon fiber scaffolds in the surgical treatment of cartilage lesions. Ann Transplant 1999, 4:101-102.
Li W.J., Jiang Y.J., Tuan R.S. Chondrocyte phenotype in engineered fibrous matrix is regulated by fiber size. Tissue Eng 2006, 12:1775-1785.
Taboas J.M., Maddox R.D., Krebsbach P.H., et al. Indirect solid free form fabrication of local and global porous, biomimetic and composite 3D polymer-ceramic scaffolds. Biomaterials 2003, 24:181-194.
Schaefer D., Martin I., Jundt G., et al. Tissue-engineered composites for the repair of large osteochondral defects. Arthritis Rheum 2002, 46:2524-2534.
Samuel R.E., Lee C.R., Ghivizzani S.C., et al. Delivery of plasmid DNA to articular chondrocytes via novel collagen-glycosaminoglycan matrices. Hum Gene Ther 2002, 13:791-802.
Kris Kostanski L., Huang R., Filipe C.D., et al. Interpenetrating polymer networks as a route to tunable multi-responsive biomaterials: development of novel concepts. J Biomater Sci Polym Ed 2009, 20:271-297.
Caterson E.J., Li W.J., Nesti L.J., et al. Polymer/alginate amalgam for cartilage-tissue engineering. Ann N Y Acad Sci 2002, 961:134-138.
Clar C., Cummins E., McIntyre L., et al. Clinical and cost-effectiveness of autologous chondrocyte implantation for cartilage defects in knee joints: systematic review and economic evaluation. Health Technol Assess 2005, 9:1-82.
Taboas J.M., O'Connor S., Tuan R.S. Constitutive Bcl-2 over-expression triggers an anabolic response in chondrocytes, with partial abatement of IL-1β catabolic effects. 35th Annual Northeast Bioengineering Conference 2009.
Vinatier C., Mrugala D., Jorgensen C., et al. Cartilage engineering: a crucial combination of cells, biomaterials and biofactors. Trends Biotechnol 2009, 27:307-314.
Kafienah W., Jakob M., Demarteau O., et al. Three-dimensional tissue engineering of hyaline cartilage: comparison of adult nasal and articular chondrocytes. Tissue Eng 2002, 8:817-826.
Gruber H.E., Hoelscher G., Ingram J.A., et al. Culture of human anulus fibrosus cells on polyamide nanofibers: extracellular matrix production. Spine (Phila Pa 1976) 2009, 34:4-9.
Steinwachs M. New technique for cell-seeded collagen-matrix-supported autologous chondrocyte transplantation. Arthroscopy 2009, 25:208-211.
Djouad F., Mrugala D., Noel D., et al. Engineered mesenchymal stem cells for cartilage repair. Regen Med 2006, 1:529-537.
Elder S.H., Cooley A., Borazjani A., et al. Production of hyaline-like cartilage by bone marrow mesenchymal stem cells in a self-assembly model. Tissue Eng Part A 2009, 31.
Rada T., Reis R.L., Gomes M.E. Adipose tissue-derived stem cells and their application in bone and cartilage tissue engineering. Tissue Eng Part B Rev 2009, 28.
Jackson W.M., Aragon A.B., Djouad F., et al. Mesenchymal progenitor cells derived from traumatized human muscle. J Tissue Eng Regen Med 2009, 3:129-138.
Sommar P., Pettersson S., Ness C., et al. Engineering three-dimensional cartilage- and bone-like tissues using human dermal fibroblasts and macroporous gelatine microcarriers. J Plast Reconstr Aesthet Surg 2009, 28.
Fan J., Varshney R.R., Ren L., et al. Synovium-derived mesenchymal stem cells: a new cell source for musculoskeletal regeneration. Tissue Eng Part B Rev 2009, 15:75-86.
Pei M., He F., Boyce B.M., et al. Repair of full-thickness femoral condyle cartilage defects using allogeneic synovial cell-engineered tissue constructs. Osteoarthritis Cartilage 2009, 17:714-722.
Wang L., Tran I., Seshareddy K., et al. A comparison of human bone marrow-derived mesenchymal stem cells and human umbilical cord-derived mesenchymal stromal cells for cartilage tissue engineering. Tissue Eng Part A 2009, 15:2259-2266.
Pittenger M.F., Mackay A.M., Beck S.C., et al. Multilineage potential of adult human mesenchymal stem cells. Science 1999, 284:143-147.
Shakibaei M., De Souza P. Differentiation of mesenchymal limb bud cells to chondrocytes in alginate beads. Cell Biol Int 1997, 21:75-86.
Woodfield T.B., Bezemer J.M., Pieper J.S., et al. Scaffolds for tissue engineering of cartilage. Crit Rev Eukaryot Gene Expr 2002, 12:209-236.