| Literature DB >> 31800122 |
Maria Paola Giovannoni1, Letizia Crocetti1, Niccolò Cantini1, Gabriella Guerrini1, Claudia Vergelli1, Antonella Iacovone1, Elisabetta Teodori1, Igor A Schepetkin2, Mark T Quinn2, Samuele Ciattini3, Patrizia Rossi4, Paola Paoli4.
Abstract
Human neutrophil elastase (HNE) is a proteolytic enzyme belonging to the serine protease family and is involved in a variety of pathologies. Thus, compounds able to inhibit HNE represent promising therapeutics for the treatment of inflammatory diseases. Here, we report the further elaboration of our previously reported 3-methylisoxazolone derivatives, synthesizing a new series of 3-nor-derivatives bearing different substituents at the 4-phenyl ring. The most potent compounds 3a, 3g, and 3h, had IC50 values of 16, 11, and 18 nM, respectively. Molecular modeling studies and molecular dynamic (MD) simulations demonstrated no substantial differences between the 3-methylisoxazole derivatives previously tested and the corresponding 3-unsubstituted derivatives in the snapshot conformations sampled during the MD simulations, which is consistent with their similar levels of HNE inhibitory activity. Thus, we conclude that the isoxazolone scaffold is a good scaffold for developing HNE inhibitors, as it tolerates several modifications when adhering to basic scaffold requirements, and the resulting derivatives are quite potent HNE inhibitors.Entities:
Keywords: human neutrophil elastase inhibitors; molecular and crystal structures; molecular modeling
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Year: 2019 PMID: 31800122 DOI: 10.1002/ddr.21625
Source DB: PubMed Journal: Drug Dev Res ISSN: 0272-4391 Impact factor: 4.360