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Stem Cells (Dayton, Ohio)|November 20, 2009
Mesenchymal cells appearing in pancreatic tissue culture are bone marrow-derived stem cells with the capacity to improve transplanted islet functionValeria Sordi, Raffaella Melzi, Alessia Mercalli, et al.Diabetes|July 24, 2019
Islets for Research: Nothing Is Perfect, but We Can Do BetterRita Nano, Julie A Kerr-Conte, Domenico Bosco, et al.Acta Diabetologica|April 15, 2018
Insulin-mimetic effects of short-term rapamycin in type 1 diabetic patients prior to islet transplantationStefano Benedini, Federica Ermetici, Silvia Briganti, et al.The Journal of Clinical Endocrinology and Metabolism|October 31, 2021
No Evidence of Long-Term Disruption of Glycometabolic Control After SARS-CoV-2 InfectionAndrea Laurenzi, Amelia Caretto, Chiara Molinari, et al.The Review of Diabetic Studies : RDS|July 2, 2011
Risks and benefits of transplantation in the cure of type 1 diabetes: whole pancreas versus islet transplantation. A single center studyPaola Maffi, Marina Scavini, Carlo Socci, et al.Diabetes|September 8, 2011
Expansion of Th17 cells and functional defects in T regulatory cells are key features of the pancreatic lymph nodes in patients with type 1 diabetesAlessandra Ferraro, Carlo Socci, Angela Stabilini, et al.Journal of Medicinal Chemistry|February 23, 2012
Des-acyl ghrelin fragments and analogues promote survival of pancreatic β-cells and human pancreatic islets and prevent diabetes in streptozotocin-treated ratsRiccarda Granata, Fabio Settanni, Michel Julien, et al.Scientific Reports|October 27, 2017
miR-204 is associated with an endocrine phenotype in human pancreatic islets but does not regulate the insulin mRNA through MAFAIlaria Marzinotto, Silvia Pellegrini, Cristina Brigatti, et al.Biology|August 27, 2021
Pre-Existing Diabetes and COVID-Associated Hyperglycaemia in Patients with COVID-19 PneumoniaAndrea Laurenzi, Amelia Caretto, Chiara Molinari, et al.Endocrinology|October 28, 2006
Acylated and unacylated ghrelin promote proliferation and inhibit apoptosis of pancreatic beta-cells and human islets: involvement of 3',5'-cyclic adenosine monophosphate/protein kinase A, extracellular signal-regulated kinase 1/2, and phosphatidyl inositol 3-Kinase/Akt signalingRiccarda Granata, Fabio Settanni, Luigi Biancone, et al.Pageof 7