By Vallet-regi M., M. Vila
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Extra resources for Advanced Bioceramics in Nanomedicine and Tissue Engineering
The scaffold with nanofibrous structure and MCWNTs incorporation exhibited the highest enhancement not only of cell adhesion and proliferation but also of cell migration and aggregation. Moreover, cells cultured on the nanofibrous scaffold of PEU/MWCNT released the largest amount of proteins including collagen, in comparison with those cultured on the other substrates. The authors concluded that, particularly, nanofibrous architectures in combination with MWCNTs provide favourite interactions to the cells, implying the application potential of nanofibrous composite for soft tissue repair and regeneration.
L. Shi, J. Lian, W. Wang, G. K. Liu, P. He, Z. Dong, L. M. Wang and R. C. Ewing: Adv. Mater. Vol. 18 (2006), p. 189  R. Singh, D. Pantarotto, L. Lacerda, G. Pastorin, C. d. Klumpp, M. Prato, A. Bianco and K. Kostarelos: Proc. Natl. Acad. Sci. U. S. A. Vol. 103 (2006), p. 3357  B. Sitharaman, K. R. Kissell, K. B. Hartman, L. A. Tran, A. Baikalov, I. Rusakova, Y. Sun, H. A. Khant, S. J. Ludtke, W. Chiu, S. Laus, E. Toth, L. Helm, A. E. Merbach and L. J. Wilson: Chem. Commun. Vol. (2005), p.
Small percentages of MWCNTs (2 wt. %) improved significantly the mechanical properties of the PMMA bone cement. The 2 wt. 8 MPa), respectively. Bending modulus increased slightly with 5 wt. 1 % in response to 10 wt. 5 GPa). For comparison, human femoral bone has a bending modulus of 10-20 GPa . While the 2 wt. 3 times higher Weibull mean fatigue life) . 3. Injectable CNT-reinforced composites Shi et al.  prepared injectable nanocomposites of CNTs and biodegradable poly(propylene fumarate) (PPF).
Advanced Bioceramics in Nanomedicine and Tissue Engineering by Vallet-regi M., M. Vila