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Regeneration, tissue engineering

Sell, S., Barnes, C., Smith, M., McClure, M., Madurantakam, P., Grant, J., Mcmanus, M., Bowlin, G., 2007. Extracellular matrix regenerated tissue engineering via electrospun biomimetic nanofibers. Polymer International 56 (11), 1349—1360. [Pg.91]

Yuan, Z., et al. 2011. Biomaterial selection for tooth regeneration. Tissue Engineering Part B Reviews 17(5) 373-388. [Pg.22]

Tissue regeneration Tissue engineering scaffolds PLA, PGA, PLGA, PLCL, PHB Monofilament/ Nonwoven/woven/... [Pg.69]

Martin, Y., Eldardiri, M., Lawrence-Watt, D. J., Sharpe, J. R. (2011). Microcarriers and their potential in tissue regeneration. Tissue Engineering Part B Reviews, 17, 71-80. [Pg.229]

Nerve Regeneration Tissue Engineering Strategies Jennifer B. Recknor, SuryaK. Mallapragada. [Pg.478]

Mccullen, S.D., Autefage, H., Callanan, A., Gentleman, E., Stevens, M.M., 2012. Anisotropic fibrous scaffolds for articular cartilage regeneration. Tissue Engineering Part A 18, 2073-2083. [Pg.237]

Hohnes, B., Zhu, W., Li, J., Lee, J.D., Zhang, L.G., 2014. Development of biomimetic 3D printed scaffolds for osteochondral regeneration. Tissue Engineering Part A 21 under revision. [Pg.275]

Figure 13 Application of FDM-processed composite scaffolds for bone regeneration tissue engineering applications. Alternative approaches for... Figure 13 Application of FDM-processed composite scaffolds for bone regeneration tissue engineering applications. Alternative approaches for...
Stock et al. used P4HB scaffolds and tissue engineered the patch with a porosity of 95% and pore sizes in the range of 180-240 p,m by salt-leaching and solvent evaporation. The sheep autologous cells (endothelial, smooth muscle, and fibroblast cells) were seeded on the scaffold before implantation. Results confirmed that the cell-seeded implants induced progressive tissue regeneration with no thrombus formation, stenosis, or dilatation. [Pg.235]

Concurrent with these investigations, polyphosphazene matrices, functionalized with aminoacid esters or with imidazole groups, became of importance because of their tissue engineering aspects in bone regeneration [655,656,679], treatment of periodontal diseases [657], and nerve reconstruction problems [680-682] in which the remarkable bio compatibility of POP matrices was coupled with their tuneable bio degradability. [Pg.217]

Advances in Tissue Engineering Approaches to Treatment of Intervertebral Disc Degeneration Cells and Polymeric Scaffolds for Nucleus Pulposus Regeneration... [Pg.201]

Frimberger D, Lin HK, Kropp BP (2006) The use of tissue engineering and stem cells in bladder regeneration. Regen Med 1 425 135. [Pg.309]

Other recently developed biomaterials will be used for quite different purposes in tissue engineering such as artificial pancreas and liver, artificial skin, nerve regeneration, gene therapy vascular grafts, cornea replacement and others.3... [Pg.340]


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