SIMEONE, IRENE

SIMEONE, IRENE  

Scienze Biomediche, Sperimentali e Cliniche 'Mario Serio'  

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Risultati 1 - 11 di 11 (tempo di esecuzione: 0.009 secondi).
Titolo Data di pubblicazione Autore(i) File
A mitochondrial role of RuvBL1 ATPase in the regulation of HCC cell metabolism 2021 Simeone, I; Guida, A; Materozzi, M; Polvani, S; Bani, D; Parri, M; Ceni, E; Galli, A; Mello, T
Isoforms of the orphan nuclear receptor COUP-TFII differentially modulate pancreatic cancer progression 2022 Polvani, S; Pepe, S; Tempesti, S; Tarocchi, M; Marroncini, G; Bencini, L; Ceni, E; Mello, T; Picariello, L; Simeone, I; Grappone, C; Dragoni, G; Antonuzzo, L; Giommoni, E; Milani, S; Galli, A
OC.05.6: TARGETING RUVBL1 REDUCES MTOR-DRIVEN NASH-HCC DEVELOPMENT IN MICE 2024 Guida, A.; Simeone, I.; Papini, D.; Polvani, S.; Dragoni, G.; Ceni, E.; Picariello, L.; Galli, A.; Mello, T.
RuvBL1 ATPase activity is essential for mitochondrial integrity and function in HCC cells 2023 Simeone, I.; Guida, A.; Polvani, S.; Ceni, E.; Bani, D.; Nardini, P.; Guasti, D.; Parri, M.; Santi, A.; Galli, A.; Mello, T.
RUVBL1 correlates with chaperones expression in HCC and its activity is required for HSF1-mediated stress response 2024 Mello, T.; Guida, A.; Simeone, I.; Papini, D.; Vannucci, F.; Defazio, G.; Polvani, S.; Ceni, E.; Dragoni, G.; Innocenti, T.; Picariello, L.; Galli, A.
RuvBL1 haploinsufficiency improves mTOR-driven NASH-HCC development in mice 2022 Guida, A; Simeone, I; Polvani, S; Ceni, E; Picariello, L; Dragoni, G; Galli, A; Mello, T
RuvBL1 haploinsufficiency promotes hepatic lipid catabolism hampering NASH-HCC progression in mice 2023 Guida, A.; Simeone, I.; Polvani, S.; Dragoni, G.; Ceni, E.; Picariello, L.; Galli, A.; Mello, T.
SDHB and SDHD silenced pheochromocytoma spheroids respond differently to tumour microenvironment and their aggressiveness is inhibited by impairing stroma metabolism 2022 Martinelli, Serena; Riverso, Maria; Mello, Tommaso; Amore, Francesca; Parri, Matteo; Simeone, Irene; Mannelli, Massimo; Maggi, Mario; Rapizzi, Elena
Targeting RuvBL1 reduces mTOR-driven NASH-HCC progression in conditional PTEN-KO mice 2024 Guida, A.; Simeone, I.; Papini, D.; Polvani, S.; Dragoni, G.; Ceni, E.; Picariello, L.; Galli, A.; Mello, T.
Targeting the AAA+ ATPase RuvBL1 reduces mTOR-driven NASH-HCC development in mice 2023 Guida, A.; Simeone, I.; Papini, D.; Giovannini, A.; Polvani, S.; Dragoni, G.; Ceni, E.; Picariello, L.; Galli, A.; Mello, T.
The AAA+ ATPase RuvBL1 localizes to mitochondria and supports HCC cell metabolism. 2022 Tommaso Mello, Irene Simeone, Alice Guida, Simone Polvani, Elisabetta Ceni, Daniele Bani, Patrizia Nardini, Daniele Guasti, Matteo Parri, Alice Santi, Andrea Galli,