Attivita' e meccanismo d'azione di nuovi istone-deacetilasi inibitori,derivati dall'ac. Valproico, rilascianti -h2s in modelli sperimentali di carcinoma polmonare umano

Ulivi, Paola (2014) Attivita' e meccanismo d'azione di nuovi istone-deacetilasi inibitori,derivati dall'ac. Valproico, rilascianti -h2s in modelli sperimentali di carcinoma polmonare umano, [Dissertation thesis], Alma Mater Studiorum Università di Bologna. Dottorato di ricerca in Scienze farmacologiche e tossicologiche, dello sviluppo e del movimento umano, 26 Ciclo. DOI 10.6092/unibo/amsdottorato/6310.
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Abstract

Non-small-cell lung cancer (NSCLC) represents the leading cause of cancer death worldwide, and 5-year survival is about 16% for patients diagnosed with advanced lung cancer and about 70-90% when the disease is diagnosed and treated at earlier stages. Treatment of NSCLC is changed in the last years with the introduction of targeted agents, such as gefitinib and erlotinib, that have dramatically changed the natural history of NSCLC patients carrying specific mutations in the EGFR gene, or crizotinib, for patients with the EML4-ALK translocation. However, such patients represent only about 15-20% of all NSCLC patients, and for the remaining individuals conventional chemotherapy represents the standard choice yet, but response rate to thise type of treatment is only about 20%. Development of new drugs and new therapeutic approaches are so needed to improve patients outcome. In this project we aimed to analyse the antitumoral activity of two compounds with the ability to inhibit histone deacethylases (ACS 2 and ACS 33), derived from Valproic Acid and conjugated with H2S, in human cancer cell lines derived from NSCLC tissues. We showed that ACS 2 represents the more promising agent. It showed strong antitumoral and pro-apoptotic activities, by inducing membrane depolarization, cytocrome-c release and caspase 3 and 9 activation. It was able to reduce the invasive capacity of cells, through inhibition of metalloproteinases expression, and to induce a reduced chromatin condensation. This last characteristic is probably responsible for the observed high synergistic activity in combination with cisplatin. In conclusion our results highlight the potential role of the ACS 2 compound as new therapeutic option for NSCLC patients, especially in combination with cisplatin. If validated in in vivo models, this compound should be worthy for phase I clinical trials.

Abstract
Tipologia del documento
Tesi di dottorato
Autore
Ulivi, Paola
Supervisore
Co-supervisore
Dottorato di ricerca
Scuola di dottorato
Scienze biologiche, biomediche e biotecnologiche
Ciclo
26
Coordinatore
Settore disciplinare
Settore concorsuale
Parole chiave
NSCLC, HDAC, Valproic Acid, preclinical models
URN:NBN
DOI
10.6092/unibo/amsdottorato/6310
Data di discussione
7 Aprile 2014
URI

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