19 results on '"Celestini V"'
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2. Abstract P2-02-15: All-trans retinoic acid perturbs the lipidomic profiles of luminal breast cancer cells characterized by sensitivity to the anti-proliferative activity of the retinoid
3. Abstract P5-05-09: Systemic perturbations induced by all-trans retinoic acid in the gene-expression profiles of sixteen breast cancer cell lines characterized by sensitivity and resistance to the anti-proliferative effects of the retinoid
4. Uncoupling FoxO3A mitochondrial and nuclear functions in cancer cells undergoing metabolic stress and chemotherapy
5. PO-006 The MAPK/c-Myc axis in CRC: new pathogenic mechanisms and therapeutic approaches
6. PO-243 Uncoupling FOXO3A mitochondrial and nuclear functions in cancer cells undergoing metabolic stress and chemotherapy
7. PO-161 The AMPK and MEK/ERK signalling pathways regulate mitochondrial FOXO3A import through phosphorylation of serine 12 and serine 30
8. PO-493 Targeting the drug resistance epigenetic driver SMYD3 as a new strategy to potentiate chemotherapeutic effects
9. Svelato il codice molecolare di FoxO3A richiesto per la regolazione del metabolismo mitocondriale in risposta a deprivazione di nutrienti
10. SMYD3 come nuovo bersaglio molecolare per superare la chemioresistenza
11. Deciphering the Mitochondrial Tale of the FoxO3A Code
12. c-Myc come bersaglio molecolare nel cancro del colon-retto
13. SMYD3 regulates the S/G2 transition in colorectal cancer (CRC) cells
14. The FOXO3A/SIRT3 mithocondrial complex regulates energy balance in CRC cells
15. Correction to: Role of mitochondria and cardiolipins in growth inhibition of breast cancer cells by retinoic acid.
16. Role of mitochondria and cardiolipins in growth inhibition of breast cancer cells by retinoic acid.
17. Chasing the FOXO3: Insights into Its New Mitochondrial Lair in Colorectal Cancer Landscape.
18. Uncoupling FoxO3A mitochondrial and nuclear functions in cancer cells undergoing metabolic stress and chemotherapy.
19. Characterization of the rs2802292 SNP identifies FOXO3A as a modifier locus predicting cancer risk in patients with PJS and PHTS hamartomatous polyposis syndromes.
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