| Literature DB >> 27428868 |
Virginia Spanò1, Marzia Pennati2, Barbara Parrino1, Anna Carbone1, Alessandra Montalbano1, Vincenzo Cilibrasi1, Valentina Zuco2, Alessia Lopergolo2, Denis Cominetti2, Patrizia Diana1, Girolamo Cirrincione1, Paola Barraja1, Nadia Zaffaroni2.
Abstract
A series of 22 derivatives of the [1,2]oxazolo[5,4-e]isoindole system were synthesized through an efficient and versatile procedure that involves the annelation of the [1,2]oxazole moiety to the isoindole ring, producing derivatives with a wide substitution pattern. The structure-activity relationship indicates that the N-4-methoxybenzyl group appears crucial for potent activity. In addition, the presence of a 6-phenyl moiety is important and the best activity is reached with a 3,4,5-trimethoxy substituent. The most active compound, bearing both the structural features, was able to inhibit tumor cell proliferation at nanomolar concentrations when tested against the full NCI human tumor cell line panel. Interestingly, this compound was effective in reducing in vitro and in vivo cell growth, impairing cell cycle progression and inducing apoptosis, as a consequence of the inhibition of tubulin polymerization, in experimental models of diffuse malignant peritoneal mesothelioma (DMPM), a rapidly lethal disease, poorly responsive to conventional therapeutic strategies.Entities:
Mesh:
Substances:
Year: 2016 PMID: 27428868 DOI: 10.1021/acs.jmedchem.6b00777
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446