Biomedical Engineering Reference
In-Depth Information
[52] Badylak, S.F., Freytes, D.O., Gilbert, T.W. 2009. Extracellular matrix as a biological scaffold
material: structure and function. Acta Biomater . 5(1), 1-13.
[53] Liao, S., Chan, C., Ramakrishna, S. 2008. Stem cells and biomimetic materials strategies for tis-
sue engineering. Mater. Sci. Eng. C 28, 1189-1202.
[54] Curtis, A., Dalby, A. 2009. Cell response to nanofeatures in biomaterials. In: Di Silvio, L. (ed.)
Cellular Response to Biomaterials . Woodhead Publishing in Materials, 429-461. CRC Press,
Cambridge.
[55] Nishimura, I., Huang, Y., Butz, F., Ogawa, T., Lin, A., Wang, C.J. 2007. Discrete deposition of
hydroxyapatite nanoparticles on a titanium implant with predisposing substrate microtopog-
raphy accelerated osseointegration. Nanotechnology 18(24), 1-9.
[56] Ballarre, J., Pellice, SA., Schreiner, WH., et al. 2008. Coatings containing silica nanoparticles and
glass ceramic particles applied onto surgical grade stainless steel. 21st International Symposium
on Ceramics in Medicine, Oct 21-24, 2008, Buzios, Brazil. Bioceramics 21, 396-398, 311-314.
[57] Li, X., Huang, J., Edirisinghe, M.J., 2008. Novel patterning of nano-bioceramics: template-
assisted electrohydrodynamic atomization spraying. J. R. Soc. Interface 5(19) 253-257.
[58] Watari, F., Takashi, N., Yokoyama, A., Uo, M., Akasaka, T., Sato, Y., Abe, S., Totsuka, Y., Thoji, K.
2009. Material nanosizing effect on living organisms: non-specific, biointeractive, physical size
effects. J. R. Soc. Interface 6, S371-S388.
[59] Delben, J.R.J., Pimentel, O.M., Coelho, M.B., Candelorio, P.D., Furini, L.N., dos Santos, F.A.,
de  Vicente, F.S., Delben, A.A.S.T. 2009. Synthesis and thermal properties of nanoparticles of
bioactive glasses containing silver. J. Therm. Anal. Calorim . 97(2) 433-436.
[60] Lu, H., Zhang, T., Wang, X.P., Fang, Q.F. 2009. Electrospun submicron bioactive glass fibers for
bone tissue scaffold. J. Mater. Sci. Mater. Med . 20(3), 793-798.
[61] Kim, H.W., Lee, H.H., Chun, G.S. 2008. Bioactivity and osteoblast responses of novel biomedi-
Bioactivity and osteoblast responses of novel biomedi-
cal nanocomposites of bioactive glass nanofiber filled poly(lactic acid). J. Biomed. Mater. Res. A
85A(3) 651-663.
[62] Xia, W., Zhang, D.M., Chang, J. 2007. Fabrication and in vitro biomineralization of bioactive
glass (BG) nanofibres. Nanotechnology 18(13), Article number: 135601.
[63] Hutmacher, D.W., Ekaputra, A.K. 2008. Design and fabrication of electrospinning of scaffolds.
In: Chu, P.K., and Liu, X. (eds.), Biomaterials Fabrication and Processing Handbook , 115-139. CRC
Press, Boca Raton, FL.
[64] Kim, H.W., Kim, H.E., Knowles, J.C. 2006. Production and potential of bioactive glass nanofi-
bers as a next-generation biomaterial. Adv. Funct. Mater . 16(12), 1529-1535.
[65] Quintero, F., Pou, J., Comesaña, R., Lusquiños, F., Riveiro, A., Mann, A.B., Hill, R.G., Wu,
Z.Y., Jones, J.R. 2009. Laser spinning of bioactive glass nanofibers. Adv. Funct. Mater . 19(19),
3084-3090.
[66] Gittens, S.A., Uludag, H. 2001. Growth factor delivery for bone tissue engineering. J. Drug
Target . 9(6), 407-429.
[67] Kaufmann, E.A., Ducheyne, P., Radin, S., Bonnell, D.A., Composto, R. 2000. Initial events at the
bioactive glass surface in contact with protein-containing solutions. J. Biomed. Mater. Res . 15,
52(4), 825-830.
[68] Lobel, K.D., Hench, L.L. 1996. In-vitro protein interactions with a bioactive gel-glass. J. Sol-Gel
Sci. Technol . 7(1-2), 69-76.
[69] Wan, J.D., Thomas, M.S., Guthrie, S., Vullev, V.I. 2009. Surface-bound proteins with preserved
functionality. Ann. Biomed. Eng . 37(6), 1190-1205.
[70] Verné, E., Ferraris, S., Vitale-Brovarone, C., Spriano, S., Bianchi, C.L., Naldoni, A., Morra, M.,
Cassinelli, C. 2010, Alkaline phosphatase grafting on bioactive glasses and glass ceramics. Acta
Biomater . 6(1), 229-240.
[71] Verne, E., Vitale-Brovarone, C., Bui, E., et al. 2009. Surface functionalization of bioactive glasses.
J. Biomed. Mater. Res. A 90A(4), 981-992.
Kim, H.W., Lee, H.H., Chun, G.S. 2008. Bioactivity and osteoblast responses of novel biomedi-
Search WWH ::




Custom Search