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Frontiers in Endocrinology|May 28, 2019
PARP-14 Promotes Survival of Mammalian α but Not β Pancreatic Cells Following Cytokine TreatmentFloriana D'Angeli, Marina Scalia, Matilde Cirnigliaro, et al.Andrology|October 9, 2015
Asthenozoospermia and membrane remodeling enzymes: a new role for phospholipase A2C D Anfuso, M Olivieri, S Bellanca, et al.Circulation Research|December 20, 2012
Myeloid cell 5-lipoxygenase activating protein modulates the response to vascular injuryZhou Yu, Emanuela Ricciotti, Takashi Miwa, et al.International Journal of Molecular Sciences|February 11, 2023
Structural and Dynamic Disturbances Revealed by Molecular Dynamics Simulations Predict the Impact on Function of CCT5 Chaperonin Mutations Associated with Rare Severe Distal NeuropathiesFederica Scalia, Giosuè Lo Bosco, Letizia Paladino, et al.The Journal of Nutritional Biochemistry|October 30, 2025
Glucose restriction regulates osteoblasts function by modulating mitochondrial activity and lipolysisCiro Menale, Concetta Sozio, Giuliana La Rosa, et al.Journal of Biomedical Materials Research. Part A|June 17, 2024
Gallium-doped zirconia coatings modulate microbiological outcomes in dental implant surfacesAgnese D'Agostino, Giulia Misiti, Alessandro Calogero Scalia, et al.Thrombosis and Haemostasis|March 11, 2021
Real-Life Management of Central and Branch Retinal Vein Occlusion: A Seven-Year Follow-Up StudyAlessandro Arrigo, Anna Crepaldi, Chiara Viganò, et al.Gland Surgery|July 23, 2019
Choosing high-risk screening vs. surgery and the effect of treatment modality on anxiety and breast-specific sensuality in BRCA mutation carriersKristin E Rojas, Elizabeth Butler, Julie Gutierrez, et al.FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|November 20, 2012
Targeted STIM deletion impairs calcium homeostasis, NFAT activation, and growth of smooth muscleSalvatore Mancarella, Santhi Potireddy, Youjun Wang, et al.Cytogenetics and Cell Genetics|July 15, 2000
Genomic localization of the human genes TAF1A, TAF1B and TAF1C, encoding TAF(I)48, TAF(I)63 and TAF(I)110 subunits of class I general transcription initiation factor SL1C Di Pietro, A Rapisarda, V Amico, et al.Pageof 133