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DEPARTAMENTO DE CIÊNCIAS DA VIDA ... - Estudo Geral

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Cretu, A., Castagnino, P. & Assoian, R. (2010). Studying the Effects of Matrix Stiffness<br />

on Cellular Function using Acrylamide-based Hydrogels. Journal of Visualized<br />

Experiments, doi:10.3791/2089.<br />

Crouzier, T., Fourel, L., Boudou, T., Albige` s-Rizo, C., and Picart, C. (2011). Presentation<br />

of BMP-2 from a soft biopolymeric film unveils its activity on cell adhesion and<br />

migration. Adv. Mater. 23, H111–H118.<br />

da Silva Meirelles, L., A. Caplan, Nardi, N.B.. (2008). In Search of the In Vivo Identity of<br />

Mesenchymal Stem Cells. Stem Cells 26(9): 2287-2299.<br />

Davies, P. F., Mundel, T. and Barbee, K. A. (1995). A mechanism for heterogeneous<br />

endothelial responses to flow in vivo and in vitro. J. Biomech. 28, 1553-1560.<br />

Dehmelt L, Halpain S. (2004). The MAP2/tau family of microtubule-associated proteins.<br />

Genome Biol;6:204<br />

del Rio, A., Perez-Jimenez, R., Liu, R., Roca-Cusachs, P., Fernandez, J.M., and Sheetz,<br />

M.P. (2009). Stretching single talin rod molecules activates vinculin binding. Science<br />

323, 638–641.<br />

Discher, D. E., Janmey, P. and Wang, Y. L. (2005). Tissue cells feel and respond to the<br />

stiffness of their substrate. Science 310, 1139-1143.<br />

Dogterom, M., Kerssemakers, J.W., Romet-Lemonne, G., and Janson, M.E. (2005).<br />

Force generation by dynamic microtubules. Curr. Opin. Cell Biol. 17, 67–74.<br />

Dominici, M., K. Le Blanc, et al. (2006). Minimal criteria for defining multipotent<br />

mesenchymal stromal cells. The International Society for Cellular Therapy position<br />

statement. Cytotherapy 8(4): 315-317.<br />

Duband, J.L., Nuckolls, G.H., Ishihara, A., Hasegawa, T., Yamada, K.M., Thiery, J.P., and<br />

Jacobson, K. (1988). Fibronectin receptor exhibits high lateral mobility in embryonic<br />

locomoting cells but is immobile in focal contacts and fibrillar streaks in stationary cells.<br />

J. Cell Biol. 107, 1385–1396.<br />

Duncan, R. L. and Turner, C. H. (1995). Mechanotransduction and the functional<br />

response of bone to mechanical strain. Calcif. Tissue Int. 57, 344-358.<br />

Eng LF, Ghirnikar RS, Lee YL. Glial fibrillary acidic protein: GFAP-thirty-one years (1969–<br />

2000). Neurochem Res 2000;25:1439–51.<br />

Engler, A. J., Griffin, M. a, Sen, S., Bönnemann, C. G., Sweeney, H. L., & Discher, D. E.<br />

(2004). Myotubes differentiate optimally on substrates with tissue-like stiffness:<br />

pathological implications for soft or stiff microenvironments. The Journal of cell<br />

biology, 166(6), 877–87. doi:10.1083/jcb.200405004<br />

Engler, A. J., Sen, S., Sweeney, H. L., & Discher, D. E. (2006). Matrix elasticity directs<br />

stem cell lineage specification. Cell, 126(4), 677–89. doi:10.1016/j.cell.2006.06.044

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