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Endocrine, Metabolic & Immune Disorders Drug Targets|January 13, 2012
Bone marrow microenvironment: a newly recognized target for diabetes-induced cellular damageGiuseppe Mangialardi, Atsuhiko Oikawa, Carlotta Reni, et al.Antioxidants & Redox Signaling|August 5, 2014
Reactive oxygen species adversely impacts bone marrow microenvironment in diabetesGiuseppe Mangialardi, Gaia Spinetti, Carlotta Reni, et al.Scientific Reports|July 30, 2016
Diabetes Stimulates Osteoclastogenesis by Acidosis-Induced Activation of Transient Receptor Potential Cation ChannelsCarlotta Reni, Giuseppe Mangialardi, Marco Meloni, et al.Pharmacology & Therapeutics|December 6, 2016
Pericytes, an overlooked player in vascular pathobiologyDavid Ferland-McCollough, Sadie Slater, Jai Richard, et al.Arteriosclerosis, Thrombosis, and Vascular Biology|January 12, 2013
Diabetes causes bone marrow endothelial barrier dysfunction by activation of the RhoA-Rho-associated kinase signaling pathwayGiuseppe Mangialardi, Rajesh Katare, Atsuhiko Oikawa, et al.Arteriosclerosis, Thrombosis, and Vascular Biology|June 15, 2013
Perivascular delivery of encapsulated mesenchymal stem cells improves postischemic angiogenesis via paracrine activation of VEGF-ARajesh Katare, Federica Riu, Jonathan Rowlinson, et al.Antioxidants & Redox Signaling|February 12, 2014
Increased antioxidant defense mechanism in human adventitia-derived progenitor cells is associated with therapeutic benefit in ischemiaDominga Iacobazzi, Giuseppe Mangialardi, Miriam Gubernator, et al.Molecular Therapy : the Journal of the American Society of Gene Therapy|September 11, 2015
Cardiac Nerve Growth Factor Overexpression Induces Bone Marrow-derived Progenitor Cells Mobilization and Homing to the Infarcted HeartMarco Meloni, Daniela Cesselli, Andrea Caporali, et al.Circulation|March 7, 2012
Role for substance p-based nociceptive signaling in progenitor cell activation and angiogenesis during ischemia in mice and in human subjectsSilvia Amadesi, Carlotta Reni, Rajesh Katare, et al.Circulation Research|March 25, 2015
Combined intramyocardial delivery of human pericytes and cardiac stem cells additively improves the healing of mouse infarcted hearts through stimulation of vascular and muscular repairElisa Avolio, Marco Meloni, Helen L Spencer, et al.Pageof 2