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Gravina, A. N., D'Elia, N. L., Sartuqui, J., Maghi, K., Yahia, L., & Messina, P. V. (2016). Ce-TiO2 material with promising characteristics for osseointegration: Interaction with fibroblasts and effect of albumin adsorption and bioactivity on 3D surface topography. Bone, 89, 65-65. Lien externe
Gravina, N., Maghni, K., Welman, M., Yahia, L., Mbeh, D. A., & Messina, P. V. (2016). Protective role against hydrogen peroxide and fibroblast stimulation via Ce-doped TiO₂ nanostructured materials. Biochimica Et Biophysica Acta-General Subjects, 1860(2), 452-464. Lien externe
Mbeh, D. A., Hadjab, I., Ungur, M.-E., & Yahia, L. (2016). The effect of micro-pulsatile electrical and ultrasound stimulation on cellular biosynthetic activities such as cellular proliferation, endogenous nitrogen oxide and collagen synthesis. Journal of Cosmetics, Dermatological Sciences and Applications, 6(1), 41-47. Disponible
Mireles, L. K., Sacher, E., Yahia, L., Laurent, S., & Stanicki, D. (2016). A comparative physicochemical, morphological and magnetic study of silane-functionalized superparamagnetic iron oxide nanoparticles prepared by alkaline coprecipitation. International Journal of Biochemistry & Cell Biology, 75, 203-211. Lien externe
Sartuqui, J., Gravina, A. N., Rial, R., Benedini, L. A., Yahia, L., Ruso, J. M., & Messina, P. V. (2016). Biomimetic fiber mesh scaffolds based on gelatin and hydroxyapatite nano-rods: designing intrinsic skills to attain bone reparation abilities. Colloids and Surfaces B: Biointerfaces, 145, 382-391. Lien externe
Mireles, L.-K., Sacher, E., Yahia, L., Laurent, S., & Stanicki, D. (2016). Washing effect on superparamagnetic iron oxide nanoparticles. Data in Brief, 7, 1296-1301. Disponible
Mbeh, D. A., Hadjab, I., Ungur, M.-E., & Yahia, L. (2016). The effect of micro-pulsatile electrical and ultrasound stimulation on cellular biosynthetic activities such as cellular proliferation, endogenous nitrogen oxide and collagen synthesis. Journal of Cosmetics, Dermatological Sciences and Applications, 6(1), 41-47. Disponible