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Tissue engineering hydrogel

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]

Nemeth, C.L., Janebodin, K., Yuan, A.E., Dennis, J.E., Reyes, M., Kim, D.H. Enhanced chondrogenic differentiation of dental pulp stem cells using nanopatterned PEG-GelMA-HA hydrogels. Tissue Engineering Part A 20, 2817-2829 (2014)... [Pg.208]

Chung, C., Erickson, I.E., Mauck, R.L., Burdick, J.A., 2008. Differential behavior of auricular and articular chondrocytes in hyaluronic acid hydrogels. Tissue Engineering Part A 14, 1121-1131. [Pg.404]

Papadopoulos, A., Bichara, D.A., Zhao, X., Ihusuki, S., Randolph, M.A., Anseth, K.S., et al., 2011. Injectable and photopolymerizahle tissue-engineered auricular cartilage using poly(ethylene glycol) dimethacrylate copolymer hydrogels. Tissue Engineering Part A 17 (1-2), 161-169. [Pg.409]

Keywords Blends Chitin Chitosan Fibers Hydrogels Tissue engineering Wound dressing... [Pg.1]

Gelatin Natural Nanoparticles Microsphere, Hydrogel, Tissue Engineering, Gene Delivery, Plasmid DNA Paclitaxel, Cisplatin, bone morphogenetic protein 2 (BMP2)... [Pg.245]

Elastin [212], elastin-like polypeptide [213] Doxycycline Composite hydrogel Tissue engineering applications... [Pg.463]

Zhu, J., Marchant, R., 2011. Design properties of hydrogel tissue-engineering scaffolds. Expert Rev. Med. Devices 8 (5), 607-626. [Pg.272]

Bryant, S.J. and Anseth, K.A., The effects of scaffold thickness on tissue engineered cartilage in photocrosslinked poly(ethylene oxide) hydrogels. Biomaterials, 22, 619-626, 2001. [Pg.274]

Polyphosphazenes can be considered as biomaterials in several different ways, depending on the type of utilization one can predict for these substrates. In this regard, we will consider three different topics concerning water-soluble POPs and their hydrogels, bioerodible POPs for drug delivery systems and for tissue engineering, and the surface implications of POP films. [Pg.213]

Peptide-Based and Polypeptide-Based Hydrogels for Drug Delivery and Tissue Engineering... [Pg.135]

Keywords Biomaterial Drug delivery Hydrogel Peptide Polypeptide Self-assembly Tissue engineering... [Pg.135]

Hydrogel Biomaterials Tools for Tissue Engineering and Drug Delivery. 139... [Pg.135]

Burdick JA, Anseth KS (2002) Photoencapsulation of osteoblasts in injectable RGD-modified PEG hydrogels for bone tissue engineering. Biomaterials 23 4315-4323... [Pg.160]

Yamamoto M, Tabata Y, Bcada Y (1999) Growth factor release from gelatin hydrogel for tissue engineering. J Bioact Compat Polym 14 474-489... [Pg.161]

Liu B, Lewis AK, Shen W (2009) Physical hydrogels photo-cross-linked from self- assembled macromers for potential use in tissue engineering. Biomacromolecules 10 3182-3187 Vandermeulen GWM, Tziatzios C, Duncan R et al (2005) Peg-based hybrid block copolymers containing alpha-helical coiled coil peptide sequences control of self- assembly and preliminary biological evaluation. Macromolecules 38 761-769... [Pg.163]

Polymer Hydrogels in Cell Engineering and Tissue Engineering. 142... [Pg.142]

Table 1 Advantages and disadvantages of hydrogels as tissue engineering matrices Advantages Aqueous environment can protect cells and fragile drugs (peptides,... Table 1 Advantages and disadvantages of hydrogels as tissue engineering matrices Advantages Aqueous environment can protect cells and fragile drugs (peptides,...

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See also in sourсe #XX -- [ Pg.2029 ]




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