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Frontiers in Physiology|June 15, 2017
Monitoring Notch Signaling-Associated Activation of Stem Cell Niches within Injured Dental PulpThimios A Mitsiadis, Javier Catón, Pierfrancesco Pagella, et al.
Frontiers in Physiology|May 25, 2017
A Bio-Realistic Finite Element Model to Evaluate the Effect of Masticatory Loadings on Mouse Mandible-Related TissuesAlexander Tsouknidas, Lucia Jimenez-Rojo, Evangelos Karatsis, et al.
Methods in Molecular Biology (Clifton, N.J.)|June 8, 2022
Exosomes as Carriers for Notch MoleculesGuya Diletta Marconi, Francesca Diomede, Oriana Trubiani, et al.
Connective Tissue Research|December 20, 2002
In vivo and in vitro expression of connexin 43 in human teethImad About, Jean-Pierre Proust, Sylva Raffo, et al.
Experimental Cell Research|January 18, 2003
Notch2 protein distribution in human teeth under normal and pathological conditionsThimios A Mitsiadis, Annick Roméas, Urban Lendahl, et al.
The International Journal of Developmental Biology|October 17, 2007
Coexpression of Notch3 and Rgs5 in the pericyte-vascular smooth muscle cell axis in response to pulp injuryHenrik Lovschall, Thimios A Mitsiadis, Knud Poulsen, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|February 26, 2020
Human dental pulp stem cells exhibit enhanced properties in comparison to human bone marrow stem cells on neurites outgrowthPierfrancesco Pagella, Shayee Miran, Estrela Neto, et al.
Scientific Reports|February 12, 2019
A comparative in vitro study of the osteogenic and adipogenic potential of human dental pulp stem cells, gingival fibroblasts and foreskin fibroblastsRiccardo Monterubbianesi, Mladen Bencun, Pierfrancesco Pagella, et al.
Frontiers in Physiology|December 26, 2014
Distribution of the amelogenin protein in developing, injured and carious human teethThimios A Mitsiadis, Anna Filatova, Gianpaolo Papaccio, et al.
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