Biomedical Engineering Reference
In-Depth Information
Wang, M., Castro, N.J., Li, J., Keidar, M., Zhang, L.G., 2012. Greater osteoblast and mesenchymal stem cell adhesion
and proliferation on titanium with hydrothermally treated nanocrystalline hydroxyapatite/magnetically treated
carbon nanotubes. J Nanosci Nanotechnol 12, 7692-7702 .
Wang, M., Cheng, X., Zhu, W., Holmes, B., Keidar, M., Zhang, L.G., 2014. Design of biomimetic and bioactive
cold plasma-modiied nanostructured scaffolds for enhanced osteogenic differentiation of bone marrow-
derived mesenchymal stem cells. Tissue Eng Part A 20, 1060-1071 .
Wang, W., Li, B., Yang, J., Xin, L., Li, Y., Yin, H., Qi, Y., Jiang, Y., Ouyang, H., Gao, C., 2010a. The restoration of
full-thickness cartilage defects with BMSCs and TGF-beta 1 loaded PLGA/ibrin gel constructs. Biomaterials
31, 8964-8973 .
Wang, X., Wenk, E., Zhang, X., Meinel, L., Vunjak-Novakovic, G., Kaplan, D.L., 2009. Growth factor gradients
via microsphere delivery in biopolymer scaffolds for osteochondral tissue engineering. Journal of Controlled
Release 134, 81-90 .
Wang, X.L., Chen, Y.Y., Wang, Y.Z., 2010b. Synthesis of poly(p-dioxanone) catalyzed by Zn L-lactate under
microwave irradiation and its application in ibuprofen delivery. J Biomater Sci Polym Ed 21, 927-936 .
Warnke, P.H., Seitz, H., Warnke, F., Becker, S.T., Sivananthan, S., Sherry, E., Liu, Q., Wiltfang, J., Douglas,
T., 2010. Ceramic scaffolds produced by computer-assisted 3D printing and sintering: characterization and
biocompatibility investigations. J Biomed Mater Res B Appl Biomater 93, 212-217 .
Webster, T.J., Ergun, C., Doremus, R.H., Siegel, R.W., Bizios, R., 2000. Speciic proteins mediate enhanced
osteoblast adhesion on nanophase ceramics. J Biomed Mater Res 51, 475-483 .
Whang, K., Thomas, C.H., Healy, K.E., Nuber, G., 1995. A Novel Method to Fabricate Bioabsorbable Scaffolds.
Polymer 36, 837-842 .
Yu, M.F., Lourie, O., Dyer, M.J., Moloni, K., Kelly, T.F., Ruoff, R.S., 2000. Strength and breaking mechanism of
multiwalled carbon nanotubes under tensile load. Science 287, 637-640 .
Zhang, C., Hu, Y., Xu, J., 2005. [The effect of bone-related growth factors on the proliferation and differentiation
of marrow mesenchymal stem cells in vitro ]. Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi 19, 906-909 .
Zhang, L., Chen, Y., Rodriguez, J., Fenniri, H., Webster, T.J., 2008a. Biomimetic helical rosette nanotubes and
nanocrystalline hydroxyapatite coatings on titanium for improving orthopedic implants. Int J Nanomedicine
3, 323-333 .
Zhang, L., Ercan, B., Webster, T.J. 2009a. Carbon Nanotubes and Nanofibers for Tissue Engineering Applications.
In: L.I.U., C., (Ed.) Carbon. Research Signpost.
Zhang, L., Hemraz, U.D., Fenniri, H., Webster, T.J., 2010. Tuning cell adhesion on titanium with osteogenic
rosette nanotubes. J Biomed Mater Res A 95, 550-563 .
Zhang, L., Hu. J., Athanasiou, K.A., 2009b. The role of tissue engineering in articular cartilage repair and
regeneration. Crit Rev Biomed Eng 37, 1-57 .
Zhang, L., Rakotondradany, F., Myles, A.J., Fenniri, H., Webster, T.J., 2009c. Arginine-glycine-aspartic acid
modiied rosette nanotube-hydrogel composites for bone tissue engineering. Biomaterials 30, 1309-1320 .
Zhang, L., Ramsaywack, S., Fenniri, H., Webster, T.J., 2008b. Enhanced osteoblast adhesion on self-assembled
nanostructured hydrogel scaffolds. Tissue Eng Part A 14, 1353-1364 .
Zhang, L., Rodriguez, J., Raez, J., Myles, A.J., Fenniri, H., Webster, T.J., 2009d. Biologically inspired rosette
nanotubes and nanocrystalline hydroxyapatite hydrogel nanocomposites as improved bone substitutes.
Nanotechnology 20, 175101 .
Zhang, L., Sirivisoot, L., Balasundaram, G., Webster, T. J. 2008c. Nanoengineering for Bone Tissue Engineering.
In : Khademhosseini, A., Borenstein, J., Toner, M., Takayama, S., (eds.) Micro and Nanoengineering of the
Cell Microenvironment: Technologies and Applications. Artech House.
Zhang, L.J., Webster, T.J., 2009. Nanotechnology and nanomaterials: Promises for improved tissue regeneration.
Nano Today 4, 66-80 .
Zhang, S., 2003. Fabrication of novel biomaterials through molecular self-assembly. Nature biotechnology 21,
1171-1178 .
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