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Injectable biodegradable biomaterials

J. Temenoff, A. Mikos, Injectable biodegradable materials for orthopedic tissue engineering. Biomaterials 21 (2000) 2405-2412. [Pg.285]

Park, H., Temenoff, J. S., Holland, T. A., Tahata, Y. Mikos, A. G. (2005b) Delivery of TGF-/31 and chondrocytes via injectable, biodegradable hydrogels for cartilage tissue engineering apphcations. Biomaterials, 26, 7095-103. [Pg.177]

Moore LA, Norton RL, Whitman SL, Drum RL. An injectable biodegradable drug delivery system based on acrylic terminated poly e-caprolactone. Annual Meeting of the Society of Biomaterials 1995. [Pg.372]

Park H, Temenoff JS, Tabata Y, Caplan Al, Mikos AG. Injectable biodegradable bydrogel composites for rabbit marrow mesencbymal stem ceU and growth factor dehvery for cartilage tissue engineering. Biomaterials 2007 28(21) 3217—27. [Pg.262]

S. He, M.J Yaszemski, A.W Yasko, P.S. Engel, and A.G. Mikos, Injectable biodegradable polymer composites based on poly (propylene fumarate) crosslinked with poly (ethylene glycol)-dimethacrylate. Biomaterials, 21,2389-2394, 2000. [Pg.570]

Shin, H. et al.. In vivo bone and soft tissue response to injectable, biodegradable oHgo(poly(ethylene glycol) fumarate) hydrogels. Biomaterials 24,3201, 2003. [Pg.723]

Wang, L. S Chung, J. E., Chan, P. P. Y. et al. 201 Ob. Injectable biodegradable hydrogels with tunable mechanical properties for the stimulation of neurogenesic differentiation of human mesenchymal stem cells in 3D culture. Biomaterials 31 1148-57,... [Pg.234]

Chenite A, Chaput C, Wang D et al (2000) Novel injectable neutral solutions of chitosan form biodegradable gels in situ. Biomaterials 21 2155-2161... [Pg.163]

Gomes, M. E., Ribeiro, A. S., Malafaya, R. B., Reis, R. L., Cunha, A. M. (2001). A new approach based on injection moulding to produce biodegradable starch based polymeric scaffolds Morphology, mechanical, and degradation behaviour. Biomaterials., 22, 883-889. [Pg.459]

Tan HP, Chu CR et al (2009) Injectable in situ forming biodegradable chitosan-hyaluronic acid based hydrogels for cartilage tissue engineering. Biomaterials 30 2499-2506... [Pg.42]

Wu L, Jing D, Ding JA (2006) room-temperature injection molding/particulate leaching approach for fabrication of biodegradable three-dimensional porous scaffolds. Biomaterials 27 185-191... [Pg.73]

Sitharaman, B., Shi, X. F., Tran, L. A., Spicer, P. P., Rusakova, I., Wilson, L. J. Mikos, A. G. (2007) Injectable in situ cross-linkable nanocomposites of biodegradable polymers and carbon nanostructures for bone tissue engineering. Journal of Biomaterials Science - Polymer Edition, 18, 655-671. [Pg.90]

Balakrishnan, B. Jayakrishnan, A. (2005) Self-cross-linking biopolymers as injectable in situ-forming biodegradable scaffolds. Biomaterials, 26, 3941-51. [Pg.171]

Chenite, A., Chaput, C., Wang, D., Combes, C., Buschmann, M. D., Hoemann, C. D., Leroux, J. C., Atkinson, B. L., Binette, F. Selmani, A. (2000) Novel injectable neutral solutions of chitosan form biodegradable gels in situ. Biomaterials, 21, 2155-61. [Pg.172]

Adhikari R, Gunatillake PA, Griffiths I, Tatai L, Wickramaratna M, Houshyar S, et al. Biodegradable injectable polyurethanes synthesis and evaluation for orthopaedic applications. Biomaterials 2008 29(28) 3762-3770. [Pg.373]


See other pages where Injectable biodegradable biomaterials is mentioned: [Pg.323]    [Pg.221]    [Pg.272]    [Pg.449]    [Pg.272]    [Pg.79]    [Pg.158]    [Pg.94]    [Pg.86]    [Pg.65]    [Pg.83]    [Pg.96]    [Pg.161]    [Pg.290]    [Pg.354]    [Pg.318]   
See also in sourсe #XX -- [ Pg.34 , Pg.323 ]




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Injectable biodegradable biomaterials poly

Injectable biomaterials

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