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Fibrous scaffold

Keywords Bone Cardiovascular tissue engineering Electrospinning Microfibers Multiscale fibrous scaffolds Nanofibers Neural... [Pg.2]

To overcome the current limitations, one approach developed mainly in the last 5 years has been to study multiscale scaffolds in an attempt to mimic hierarchical tissue structures. This review essentially focuses on studies involving multiscale fibrous scaffolds, their development, use of different fabrication methods, their properties, and specific applications in tissue engineering. [Pg.3]

Fig. 2 3D projection images of cell infiltration behavior into (a) micro/nanofibrous scaffolds and (b) micro/nano/nHAp fibrous scaffolds (Adapted from [53])... [Pg.6]

Table 1 Applications of multiscale fibrous scaffolds for tissue engineering... [Pg.15]

Li WJ et al (2006) Fabrication and characterization of six electrospun poly(alpha-hydroxy ester)-based fibrous scaffolds for tissue engineering applications. Acta Biomater 2(4) 377-385... [Pg.123]

Metter RB et al (2010) Biodegradable fibrous scaffolds with diverse properties by electrospinning candidates from a combinatorial macromer library. Acta Biomater 6(4) 1219-1226... [Pg.123]

Sundararaghavan HG, Metter RB, Burdick JA (2010) Electrospun fibrous scaffolds with multiscale and photopattemed porosity. Macromol Biosci 10(3) 265-270 Vanderhooft JL et al (2009) Rheological properties of cross-linked hyaluronan-gelatin hydrogels for tissue engineering. Macromol Biosci 9( l) 20—28... [Pg.127]

Zhang Y et al (2005) Electrospinning of gelatin fibers and gelatin/PCL composite fibrous scaffolds. J Biomed Mater Res B Appl Biomater 72(1) 156-165... [Pg.129]

Chen F et al (2009) Biocompatibility, alignment degree and mechanical properties of an electrospun chitosan-P(LLA-CL) fibrous scaffold. J Biomater Sci Polym Ed 20(14) 2117-2128... [Pg.129]

Chew SY et al (2008) The effect of the alignment of electrospun fibrous scaffolds on Schwann cell maturation. Biomaterials 29(6) 653-661... [Pg.208]

Leong MF et al (2009) Effect of electrospun poly(D, L-lactide) fibrous scaffold with nanoporous surface on attachment of porcine esophageal epithelial cells and protein adsorption. J Biomed Mater Res A 89(4) 1040-1048... [Pg.210]

Nanoscaled PCL and PCL/gelatin fibrous scaffolds with immobilized epidermal growth factor (EGF) were prepared for the purpose of wound-healing treatments [80]. The tissue scaffolds were fabricated by electrospinning and the parameters that affect the electrospinning process were optimized. In this study, the fiber diameters were 488 114 nm and 663 107 nm for PCL and PCL/gelatin scaffolds, respectively, and the porosities were calculated as 79% for PCL and 68% for... [Pg.257]

Gui-Bo, Y., et al., 2010. Study of the electrospun PLA/silk fibroin-gelatin composite nano-fibrous scaffold for tissue engineering. Journal of Biomedical Materials Research Part A 93A (1), 158-163. [Pg.67]

Smith, L.A., Ma, P.X., 2004. Nano-fibrous scaffolds for tissue engineering. Colloids and Surfaces B Biointerfaces 39, 125—131. [Pg.152]

Woo, K.M., V.J. Chen, and P.X. Ma, Nano-fibrous scaffolding architecture selectively enhances protein adsorption contributing to cell attachment. / Biomed. Mater. Res., 2003,67A 531-7. [Pg.792]


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See also in sourсe #XX -- [ Pg.148 ]




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