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Skin, collagen tissue engineering

Ma L, Gao CY, Mao ZW et al (2003) Collagen/chitosan porous scaffolds with improved biostability for skin tissue engineering. Biomaterials 24 4833-4841... [Pg.75]

I. Efrimescu, Collagen-based scaffolds for skin tissue engineering,... [Pg.63]

Chen KY, Liao WJ, Kuo SM, Tsai FJ, Chen YS, Huang CY, Yao CH (2009) Asymmetric chitosan membrane containing collagen I nanospheres for skin tissue engineering. Biomacromolecules 10 1642-1649... [Pg.21]

A. Faikrua, R. Jeenapongsab, M. Sila-asna, and J. Viyoch, Properties of -glycerol phos-phate/collagen/chitosan blend scaffolds for application in skin tissue engineering, ScienceAsia, 35,247-254,2009. [Pg.470]

M. Popa, M. Zagnat, and L. Verestiuc, Porous hydrogels based on itaconic anhydride modified collagen/HEMA for skin tissue engineering, E-Health and Bioengineering Conference, Iasi, Romania, 2011. [Pg.471]

G. hammers, G.S. Tjabringa, J. Schalkwijk, W.F. Daamen, and T.H. van Kuppevelt, A molecularly defined array based on native fibrillar collagen for the assessment of skin tissue engineering biomaterials. Biomaterials, 30,6213-6220, 2009. [Pg.474]

A similar composite based on the PCL/coUagen was also studied as substrate for skin tissue engineering. The results revealed that composite films of collagen/PCL composites are favorable substrates for the growth of fibroblasts and keratinocytes and provide adequate system for skin repair [40]. Multilayered polyelectrolyte films synthesized from hyaluronic acid, coUagen, and poly(ethyleneimine), were investigated for their in vitro response as chondrosarcoma cells proliferation with interestingly tunable antitumor properties [41] (Table 14.3). [Pg.491]

PoweU, HM., Boyce, S.T., 2009. Engineered human skin fabricated using electrospun collagen-PCL blends morphogenesis and mechanical properties. Tissue Engineering Part A 15 (8), 2177-2187. [Pg.69]


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See also in sourсe #XX -- [ Pg.78 ]




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