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Cellular and Molecular Life Sciences : CMLS|February 2, 2013
Silencing of RB1 but not of RB2/P130 induces cellular senescence and impairs the differentiation potential of human mesenchymal stem cellsNicola Alessio, Wolfgang Bohn, Verena Rauchberger, et al.Journal of Cellular Physiology|August 12, 2008
Mesenchymal stem cells effectively reduce surgically induced stenosis in rat carotidsAmalia Forte, Mauro Finicelli, Monica Mattia, et al.Current Problems in Cardiology|July 13, 2019
Risk Stratification in Bicuspid Aortic Valve Aortopathy: Emerging Evidence and Future PerspectivesAlessandro Della Corte, Hector I Michelena, Angelo Citarella, et al.Heart and Vessels|November 18, 2017
Polyamine concentration is increased in thoracic ascending aorta of patients with bicuspid aortic valveAmalia Forte, Mario Grossi, Ciro Bancone, et al.Apoptosis : an International Journal on Programmed Cell Death|June 12, 2012
Low concentrations of isothiocyanates protect mesenchymal stem cells from oxidative injuries, while high concentrations exacerbate DNA damageFulvia Zanichelli, Stefania Capasso, Giovanni Di Bernardo, et al.Heart and Vessels|January 20, 2017
Patients with bicuspid and tricuspid aortic valve exhibit distinct regional microrna signatures in mildly dilated ascending aortaSebastian Albinsson, Alessandro Della Corte, Azra Alajbegovic, et al.Journal of Cellular Biochemistry|November 18, 2004
Molecular pathways involved in neural in vitro differentiation of marrow stromal stem cellsFrancesco P Jori, Marco A Napolitano, Mariarosa A B Melone, et al.Circulation Research|April 20, 2017
A Possible Early Biomarker for Bicuspid Aortopathy: Circulating Transforming Growth Factor β-1 to Soluble Endoglin RatioAmalia Forte, Ciro Bancone, Gilda Cobellis, et al.Journal of Cellular Physiology|June 23, 2015
G-CSF contributes at the healing of tunica media of arteriotomy-injured rat carotids by promoting differentiation of vascular smooth muscle cellsBarbara Rinaldi, Mauro Finicelli, Maria Donniacuo, et al.Experimental & Molecular Medicine|March 23, 2018
Neural stem cells from a mouse model of Rett syndrome are prone to senescence, show reduced capacity to cope with genotoxic stress, and are impaired in the differentiation processNicola Alessio, Francesco Riccitiello, Tiziana Squillaro, et al.Pageof 6