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Calcium phosphate scaffold

Polak SJ, Lan Levengood SK, Wheeler MB, Maki AJ, Claik SG, Wagoner Johnson AJ (2011). Analysis of the roles of microporosity and BMP-2 on multiple measures of bone regeneration and healing in calcium phosphate scaffolds. Ada Biomater 2011 7 1760-71. [Pg.78]

Combining the techniques mentioned above offers more powerful tools to fabricate nanoscaffolds with hierarchical, interconnected pores or more complex porous structures. For example, gas-forming and freeze-drying were used together to prepare nano-calcium phosphate (including nano-HA and nano-biophasic calcium phosphate) scaffolds with both large interconnected pores (e.g., >100 pm) and miciopores (pore sizes from nanometers to submicrons) [37]. [Pg.55]

Zhang F, Lin K, Chang J, Lu J, Ning C. Spark plasma sintering of macroporous calcium phosphate scaffolds from nanocrystalline powders. J Eur Ceram Soc 2008 28 539-45. [Pg.72]

Dai X, Shivkumar S. Hybrid analogs for the production of porous calcium phosphate scaffolds. Mater Sci Eng C 2008 28 336 0. [Pg.72]

Mondrinos MJ, Dembzynsld R, Lu L, Byrapogu VK, Wootton DM, Lelkes PI, Zhou J (2006) Porogen-based solid freeform fabiieation of polycaprolactone-calcium phosphate scaffolds for tissue engineering. Biomaterials 27 4399-4408... [Pg.200]

Levengood SKL, et al. The effect of BMP-2 on micro- and macroscale osteointegration of biphasic calcium phosphate scaffolds with multiscale porosity. Acta Biomater 2010 ... [Pg.163]

Keeney, M., Collin, E., Pandit, A., 2009. Multi-channeUed collagen-calcium phosphate scaffolds their physical properties and human cell response. Tissue Eng. Part C Methods 15, 265-273. [Pg.59]

Lickorish D, Guan L, Davies JE. A three-phase, fully resorbable, polyester/calcium phosphate scaffold for bone tissue engineering evolution of scaffold design. Biomaterials 2007 28 1495-502. [Pg.203]

Keeney, M., Van DEN Beucken, J., Van DER Kraan, P. M., Jansen, J. A., and Pandit, A. 2010. The ability of a coUagen/calcium phosphate scaffold to act as its own vector for gene dehvery and to promote bone formation via transfection with Vegf(165). Biomaterials, 31,2893-2902. [Pg.368]

Jafarkhani M, Fazlali A, Moztarzadeh F, Moztarzadeh Z, Mozafari M. Fabrication and characterization of PLLA/chitosan/nano calcium phosphate scaffolds by freeze-casting technique. Ind Eng Chem Res 2012 51(27) 9241-9. [Pg.302]

Roohani-Esfahani SI, Nouri-Khorasani S, Lu Z, Appleyard R, Zreiqat H. The influence hydroxyapatite nanoparticle shape and size on the properties of biphasic calcium phosphate scaffolds coated with hydroxyapatitePCL composites. Biomaterials 2010 31(21) 5498-509. [Pg.303]

Buschmann J, Harter L, Gao S, Hemmi S, Welti M, Hild N, et al. Tissue engineered bone grafts based on biomimetic nanocomposite PLGA/amorphous calcium phosphate scaffold and human adipose-derived stem cells. Injury 2012 43(10) 1689-97. [Pg.304]

Bioglass implants with pores ranging from 100 to 600 m induced ectopic bone formation in dogs [47]. Silica-calcium phosphate scaffolds with different porosities... [Pg.339]


See other pages where Calcium phosphate scaffold is mentioned: [Pg.32]    [Pg.520]    [Pg.118]    [Pg.43]    [Pg.66]    [Pg.74]    [Pg.229]    [Pg.39]    [Pg.351]    [Pg.641]    [Pg.642]    [Pg.823]    [Pg.727]    [Pg.733]    [Pg.1116]    [Pg.1404]    [Pg.1405]   
See also in sourсe #XX -- [ Pg.221 ]




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