Biomedical Engineering Reference
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Holmes, B., Zarate, A., Keidar, M., Zhang, L. G. 2014b. Enhanced Human Bone Marrow Mesenchymal Stem
Cell Chondrogenic Differentiation in Electrospun Constructs with Carbone Nanomaterials. Carbon , Under
review.
Hosseinkhani, H., Hosseinkhani, M., Tian, F., Kobayashi, H., Tabata, Y., 2006. Osteogenic differentiation
of mesenchymal stem cells in self-assembled peptide-amphiphile nanoibers. Biomaterials 27,
4079-4086 .
Huber, F.X., Belyaev, O., Hillmeier, J., Kock, H.J., Huber, C., Meeder, P.J., Berger, I., 2006. First histological
observations on the incorporation of a novel nanocrystalline hydroxyapatite paste OSTIM in human cancellous
bone. BMC Musculoskelet Disord 7, 50 .
Huebsch, N., Mooney, D.J., 2009. Inspiration and application in the evolution of biomaterials. Nature 462,
426-432 .
Im, O., Li, J., Wang, M., Zhang, L.G., Keidar, M., 2012. Biomimetic three-dimensional nanocrystalline
hydroxyapatite and magnetically synthesized single-walled carbon nanotube chitosan nanocomposite for bone
regeneration. Int J Nanomedicine 7, 2087-2099 .
Jang, M.J., Namgung, S., Hong, S., Nam, Y., 2010. Directional neurite growth using carbon nanotube patterned
substrates as a biomimetic cue. Nanotechnology 21, 235102 .
Jiang, C.C., Chiang, H., Liao, C.J., Lin, Y.J., Kuo, T.F., Shieh, C.S., Huang, Y.Y., Tuan, R.S., 2007. Repair of
porcine articular cartilage defect with a biphasic osteochondral composite. J Orthop Res 25, 1277-1290 .
Jung, S.H., Song, W., Lee, S.I., Kim, Y., Cha, M.J., Kim, S.H., Jung, D.S., Jung, M.W., An, K.S., Park, C.Y., 2013.
Synthesis of graphene and carbon nanotubes hybrid nanostructures and their electrical properties. J Nanosci
Nanotechnol 13, 6730-6734 .
Kalfa, D., Bel, A., Chen-Tournoux, A., Della Martina, A., Rochereau, P., Coz, C., Bellamy, V., Bensalah, M.,
Vanneaux, V., Lecourt, S., Mousseaux, E., Bruneval, P., Larghero, J., Menasche, P., 2010. A polydioxanone
electrospun valved patch to replace the right ventricular outlow tract in a growing lamb model. Biomaterials
31, 4056-4063 .
Khanarian, N.T., Jiang, J., Wan, L.Q., Mow, V.C., Lu, H.H., 2012. A hydrogel-mineral composite scaffold for
osteochondral interface tissue engineering. Tissue Eng Part A 18, 533-545 .
Kim, M., Erickson, I.E., Choudhury, M., Pleshko, N., Mauck, R.L., 2012. Transient exposure to TGF-beta3
improves the functional chondrogenesis of MSC-laden hyaluronic acid hydrogels. J Mech Behav Biomed
Mater 11, 92-101 .
Kim, Y., Hayashi, T., Endo, M., Dresselhaus, M., 2013. Carbon Nanoibers. In: Vajtai, R. (Ed.), Springer Handbook
of Nanomaterials. Springer Berlin Heidelberg .
Kim, Y.G., Kim, J.W., Pyeon, H.J., Hyun, J.K., Hwang, J.Y., Choi, S.J., Lee, J.Y., Deak, F., Kim, H.W., Lee, Y.I.,
2014. Differential stimulation of neurotrophin release by the biocompatible nano-material (carbon nanotube)
in primary cultured neurons. J Biomater Appl 28, 790-797 .
Koch, L., Deiwick, A., Schlie, S., Michael, S., Gruene, M., Coger, V., Zychlinski, D., Schambach, A., Reimers,
K., Vogt, P.M., Chichkov, B., 2012. Skin tissue generation by laser cell printing. Biotechnol Bioeng 109,
1855-1863 .
Kong, Y.M., Bae, C.J., Lee, S.H., Kim, H.W., Kim, H.E., 2005. Improvement in biocompatibility of ZrO2-Al2O3
nano-composite by addition of HA. Biomaterials 26, 509-517 .
Kundu, J., Shim, J.H., Jang, J., Kim, S.W., Cho, D.W., 2013. An additive manufacturing-based PCL-alginate-
chondrocyte bioprinted scaffold for cartilage tissue engineering. J Tissue Eng Regen Med .
Kuo, C.K., Marturano, J.E., Tuan, R.S., 2010. Novel strategies in tendon and ligament tissue engineering: Advanced
biomaterials and regeneration motifs. Sports Med Arthrosc Rehabil Ther Technol 2, 20 .
Lan, F., Li, G., 2013. Direct observation of hole transfer from semiconducting polymer to carbon nanotubes. Nano
Lett 13, 2086-2091 .
Lee, J.E., Khang, D., Kim, Y.E., Webster, T.J., 2006. Stem Cell Impregnated Carbon Nanoibers/Nanotubes for
Healing Damaged Neural Tissue 915, 17-22 .
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