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Tissue engineering hyaluronic acid

Price RD, Das-Gupta V, Leigh IM, Navsaria HA. A comparison of tissue-engineered hyaluronic acid dermal matrices in a human wound model. Tissue Eng 2006 12 2985-2995. [Pg.332]

Ohya S, Nakayama Y, Matsuda T. Thermoresponsive artificial extracellular matrix for tissue engineering hyaluronic acid bioconjugated with poly(N-iso-propylacrylamide) grafts. Biomacromolecules 2001 2 856-863. [Pg.353]

Collagen Natural Hydrogel, Nanoparticle, Tissue Engineering Hyaluronic acid and fibronectin... [Pg.245]

M. Halbleib, T. Skurk, C. de Luca, D. von Heimburg, H. Hauner, Tissue engineering of white adipose tissue using hyaluronic acid-based scaffolds. 1 in vitro differentiation of human adipocyte precursor cells on scaffolds. Biomaterials 24 (2003) 3125-3132. [Pg.242]

Cloyd JM et al (2007) Material properties in unconfined compression of human nucleus pulposus, injectable hyaluronic acid-based hydrogels and tissue engineering scaffolds. Eur Spine J 16(11) 1892-1898... [Pg.230]

L. A. Solchaga, J. E. Dennis, V. M. Goldberg, and A. I. Caplan, Hyaluronic acid-based polymers as cell carriers for tissue-engineered repair of bone and cartilage. J. Orthop. Res. 17, 205-123 (1999). [Pg.227]

Ji Y et al (2006) Dual-syringe reactive electrospinning of cross-linked hyaluronic acid hydrogel nanofibers for tissue engineering applications. Macromol Biosci 6( 10) 811—817... [Pg.128]

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]

Yamane S, Iwasaki N, Majima T et al (2005) Eeasibility of chitosan-based hyaluronic acid hybrid biomaterial for a novel scaffold in cartilage tissue engineering. Biomaterials 26 611-619... [Pg.77]

Leach JB, Schmidt CE. Characterization of protein release from photocros-slinkable hyaluronic acid-polyethylene glycol hydrogel tissue engineering scaffolds. Biomaterials 2004 26 125-135. [Pg.352]

Collier, J. H., Camp, J. R, Hudson, T. W. and Schmidt, C. E., Synthesis and characterization of polyp5n role hyaluronic acid composite biomaterials for tissue engineering applications,. Biomed. Mater. Res., 50, 574, 2000. [Pg.100]

K. Hemmrich, D. von Heimburg, R. Rendchen, C. Di Bartolo, E. Milella, N. Pallua, Implantation of preadipocyte-loaded hyaluronic acid-based scaffolds into nude mice to evaluate potential for soft tissue engineering. Biomaterials 26 (34) (2005) 7025-7037. [Pg.86]

A. Borzacchiello, et al.. Structural and rheological characterization of hyaluronic acid-based scaffolds for adipose tissue engineering. Biomaterials 28 (2007) 4399—4408. [Pg.242]


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See also in sourсe #XX -- [ Pg.357 ]




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