Biomedical Engineering Reference
In-Depth Information
Curtin, C. M., Cunniffe, G. M., Lyons, F. G., et al. 2012. Innovative collagen nano-
hydroxyapatite scaffolds offer a highly efficient non-viral gene delivery plat-
form for stem cell-mediated bone formation. Adv Mater 24(6): 749-754.
Di Martino, A., Sittinger, M., and Risbud, M. V. 2005. Chitosan: A versatile biopolymer
for orthopaedic tissue-engineering. Biomaterials 26(30): 5983-5990.
Fu, H., Hu, Y., McNelis, T., et al. 2005. A calcium phosphate-based gene delivery sys-
tem. J Biomed Mater Res A 74(1): 40-48.
Gaharwar, A. K., Dammu, S. A., Canter, J. M., et al. 2011. Highly extensible, tough,
and elastomeric nanocomposite hydrogels from poly(ethylene glycol) and
hydroxyapatite nanoparticles. Biomacromolecules 12(5): 1641-1650.
Georgiou, G., Mathieu, L., Pioletti, D. P., et al. 2007. Polylactic acid-phosphate glass
composite foams as scaffolds for bone tissue engineering. J Biomed Mater Res B
Appl Biomater 80(2): 322-331.
Gómez-Romero, P., and Sanchez, C. 2004. Functional Hybrid Materials . Weinheim:
Wiley-VCH.
Guarino, V., Causa, F., Taddei, P., et al. 2008. Polylactic acid fibre-reinforced polycap-
rolactone scaffolds for bone tissue engineering. Biomaterials 29(27): 3662-3670.
Haaparanta, A. M., Haimi, S., Ella, V., et al. 2010. Porous polylactide/beta-tricalcium
phosphate composite scaffolds for tissue engineering applications. J Tissue Eng
Regen Med 4(5): 366-373.
Haimi, S., Suuriniemi, N., Haaparanta, A. M., et al. 2009. Growth and osteogenic dif-
ferentiation of adipose stem cells on PLA/bioactive glass and PLA/beta-TCP
scaffolds. Tissue Eng Part A 15(7): 1473-1480.
Holmquist, P. C., Holmquist, G. P., and Summers, M. L. 2011. Comparing binding site
information to binding affinity reveals that Crp/DNA complexes have several
distinct binding conformers. Nucleic Acids Res 39(15): 6813-6824.
Huang, H. C., Barua, S., Kay, D. B., et al. 2010. Simultaneous enhancement of photo-
thermal stability and gene delivery efficacy of gold nanorods using polyelectro-
lytes. ACS Nano 3(10): 2941-2952; erratum, 4(3): 1769-1770.
Huang, X., and Miao, X. 2007. Novel porous hydroxyapatite prepared by combining
H2O2 foaming with PU sponge and modified with PLGA and bioactive glass. J
Biomater Appl 21(4): 351-374.
Hwang, S. J., and Davis, M. E. 2001. Cationic polymers for gene delivery: Designs
for overcoming barriers to systemic administration. Curr Opin Mol Ther 3(2):
183-191.
Jeong, J. H., Mok, H., Oh, Y. K., et al. 2009. siRNA conjugate delivery systems.
Bioconjug Chem 20(1): 5-14.
Jevtic, M., Radulovic, A., Ignjatovic, N., et al. 2009. Controlled assembly of poly(D,L-
lactide-co-glycolide)/hydroxyapatite core-shell nanospheres under ultrasonic
irradiation. Acta Biomater 5(1): 208-218.
Jiang, J., Tang, A., Ateshian, G. A., et al. 2010. Bioactive stratified polymer ceramic-
hydrogel scaffold for integrative osteochondral repair. Ann Biomed Eng 38(6):
2183-2196.
Jo, J. H., Lee, E. J., Shin, D. S., et al. 2009. In vitro/in vivo biocompatibility and mechani-
cal properties of bioactive glass nanofiber and poly(epsilon-caprolactone) com-
posite materials. J Biomed Mater Res B Appl Biomater 91(1): 213-220.
Kakizawa, Y., Furukawa, S., Ishii, A., et al. 2006. Organic-inorganic hybrid-nanocar-
rier of siRNA constructing through the self-assembly of calcium phosphate and
PEG-based block aniomer. J Controlled Release 111(3): 368-370.
Search WWH ::




Custom Search