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Salgueiredo, E., Vila, M., Silva, M. A., Lopes, M. A., Santos, J. D., Costa, F. M., Silva, R. F., Gomes, P. S., & Fernandes, M. H. (2008). Biocompatibility evaluation of DLC-coated Si 3N 4 substrates for biomedical applications . Diamond and Related MaterialsDiamond Relat. Mat., 17(4-5), 878 - 881.
Gomes, P. S., Santos, J. D., & Fernandes, M. H. (2008). Cell-induced response by tetracyclines on human bone marrow colonized hydroxyapatite and Bonelike ® . Acta BiomaterialiaActa Biomater., 4(3), 630 - 637.
Amaral, M., Gomes, P. S., Lopes, M. A., Santos, J. D., Silva, R. F., & Fernandes, M. H. (2009). Cytotoxicity evaluation of nanocrystalline diamond coatings by fibroblast cell cultures. Acta BiomaterialiaActa Biomater., 5(2), 755 - 763.
Morais, S., Sousa, J. P., Fernandes, M. H., Carvalho, G. S., De Bruijn, J. D., & Van Blitterswijk, C. A. (1998). Decreased consumption of Ca and P during in vitro biomineralization and biologically induced deposition of Ni and Cr in presence of stainless steel corrosion products. Journal of Biomedical Materials ResearchJ. Biomed. Mater. Res., 42(2New York, NY, United States), 199 - 212.
Pelaez-Vargas, A., Gallego-Perez, D., Ferrell, N., Fernandes, M. H., Hansford, D., & Monteiro, F. J. (2010). Early spreading and propagation of human bone marrow stem cells on isotropic and anisotropic topographies of silica thin films produced via microstamping. Microscopy and MicroanalysisMicrosc. Microanal., 16(6), 670 - 676.
Morais, S., Sousa, J. P., Fernandes, M. H., Carvalho, G. S., De Bruijn, J. D., & Van Blitterswijk, C. A. (1998). Effects of AISI 316L corrosion products in in vitro bone formation. BiomaterialsBiomaterials, 19(11-12Exeter, United Kingdom), 999 - 1007.
Tomás, H., Carvalho, G. S., Fernandes, M. H., Freire, A. P., & Abrantes, L. M. (1996). Effects of Co-Cr corrosion products and corresponding separate metal ions on human osteoblast-like cell cultures. Journal of Materials Science: Materials in MedicineJ. MATER. SCI. MATER. MED., 7(5London, United Kingdom), 291 - 296.
Pelaez-Vargas, A., Gallego-Perez, D., Carvalho, A., Fernandes, M. H., Hansford, D. J., & Monteiro, F. J. (2013). Effects of density of anisotropic microstamped silica thin films on guided bone tissue regeneration - In vitro study. Journal of Biomedical Materials Research - Part B Applied Biomaterials, 101 B(5), 762 - 769.
Ferraz, M. P., Fernandes, M. H., Santos, J. D., & Monteiro, F. J. (2001). HA and double-layer HA-P 2O 5/CaO glass coatings: Influence of chemical composition on human bone marrow cells osteoblastic behavior . Journal of Materials Science: Materials in MedicineJ. Mater. Sci. Mater. Med., 12(7), 629 - 638.
Portela, A., Vasconcelos, M., Fernandes, M. H., Garcia, M., Silva, A., Gabriel, J., Gartner, F., Amorim, I., & Cavalheiro, J. (2013). Highly focalised thermotherapy using a ferrimagnetic cement in the treatment of a melanoma mouse model by low temperature hyperthermia. International Journal of Hyperthermia, 29(2), 121 - 132.
Laranjeira, M. S., Dias, A. G., Santos, J. D., & Fernandes, M. H. (2009). In vitro biological characterization of macroporous 3D Bonelike ® structures prepared through a 3D machining technique . Materials Science and Engineering CMater. Sci. Eng. C, 29(3), 930 - 935.
Morais, S., Sousa, J. P., Fernandes, M. H., & Carvalho, G. S. (1998). In vitro biomineralization by osteoblast-like cells I. Retardation of tissue mineralization by metal salts. BiomaterialsBiomaterials, 19(1-3Exeter, United Kingdom), 13 - 21.
Shirosaki, Y., Tsuru, K., Hayakawa, S., Osaka, A., Lopes, M. A., Santos, J. D., & Fernandes, M. H. (2005). In vitro cytocompatibility of MG63 cells on chitosan-organosiloxane hybrid membranes. BiomaterialsBiomaterials, 26(5), 485 - 493.
Ferraz, M. P., Fernandes, M. H., Cabral, A. T., Santos, J. D., & Monteiro, F. J. (1999). In vitro growth and differentiation of osteoblast-like human bone marrow cells on glass reinforced hydroxyapatite plasma-sprayed coatings. Journal of Materials Science: Materials in MedicineJ. Mater. Sci. Mater. Med., 10(9Dordrecht, Netherlands), 567 - 576.
Morais, S., Dias, N., Sousa, J. P., Fernandes, M. H., & Carvalho, G. S. (1999). In vitro osteoblastic differentiation of human bone marrow cells in the presence of metal ions. Journal of Biomedical Materials ResearchJ. Biomed. Mater. Res., 44(2New York, NY, United States), 176 - 190.
Dias, A. G., Lopes, M. A., Trigo Cabral, A. T., Santos, J. D., & Fernandes, M. H. (2005). In vitro studies of calcium phosphate glass ceramics with different solubility with the use of human bone marrow cells. Journal of Biomedical Materials Research - Part AJ. Biomed. Mater. Res. Part A, 74(3), 347 - 355.
Laranjeira, M. S., Fernandes, M. H., & Monteiro, F. J. (2010). Innovative macroporous granules of nanostructured-hydroxyapatite agglomerates: Bioactivity and osteoblast-like cell behaviour. Journal of Biomedical Materials Research - Part AJ. Biomed. Mater. Res. Part A, 95(3 A), 891 - 900.
Pelaez-Vargas, A., Gallego-Perez, D., Magallanes-Perdomo, M., Fernandes, M. H., Hansford, D. J., De Aza, A. H., Pena, P., & Monteiro, F. J. (2011). Isotropic micropatterned silica coatings on zirconia induce guided cell growth for dental implants. Dental MaterialsDent. Mater., 27(6), 581 - 589.
Carvalho, A., Pelaez-Vargas, A., Gallego-Perez, D., Grenho, L., Fernandes, M. H., De Aza, A. H., Ferraz, M. P., Hansford, D. J., & Monteiro, F. J. (2012). Micropatterned silica thin films with nanohydroxyapatite micro-aggregates for guided tissue regeneration. Dental MaterialsDent. Mater., 28(12), 1250 - 1260.
Fernandes, M. H., Costa, M. A., & Carvalho, G. S. (1997). Mineralization in serially passaged human alveolar bone cells. Journal of Materials Science: Materials in MedicineJ. MATER. SCI. MATER. MED., 8(2London, United Kingdom), 61 - 65.
Laranjeira, M. S., Carvalho, Â., Pelaez-Vargas, A., Hansford, D., Ferraz, M. P., Coimbra, S., Costa, E., Santos-Silva, A., Fernandes, M. H., & Monteiro, F. J. (2014). Modulation of human dermal microvascular endothelial cell and human gingival fibroblast behavior by micropatterned silica coating surfaces for zirconia dental implant applications. Science and Technology of Advanced Materials, 15(2).

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