| Literature DB >> 31427145 |
Annalisa Reale1, Simone Brogi2, Alessia Chelini1, Marco Paolino1, Angela Di Capua1, Germano Giuliani1, Andrea Cappelli1, Gianluca Giorgi1, Giulia Chemi1, Alessandro Grillo1, Massimo Valoti3, Lidia Sautebin4, Antonietta Rossi4, Simona Pace4, Concettina La Motta2, Lorenzo Di Cesare Mannelli5, Elena Lucarini5, Carla Ghelardini5, Maurizio Anzini6.
Abstract
A novel series of 1,5-diarylpyrrol-3-sulfur derivatives (10-12) was synthesized and characterized by NMR and mass spectroscopy and x-ray diffraction. The biological activity of these compounds was evaluated in in vitro and in vivo tests to assess their COX-2 inhibitory activity along with anti-inflammatory and antinociceptive effect. Results showed that the bioisosteric transformation of previously reported alkoxyethyl ethers (9a-c) into the corresponding alkyl thioethers (10a-c) still leads to selective and active compounds being the COX-2 inhibitory activity for most of them in the low nanomolar range. The oxidation products of 10a,b were also investigated and both couple of sulfoxides (11a,b) and sulfones (12a,b) showed an appreciable COX-2 inhibitory activity. Molecular modeling studies were performed to investigate the binding mode of the representative compounds 10b, 11b, and 12b into COX-2 enzyme and to explore the potential site of metabolism of 10a and 10b due to the different in vivo efficacy. Among the developed compounds, compound 10b showed a significant in vivo anti-inflammatory and antinociceptive activity paving the way to develop novel anti-inflammatory drugs.Entities:
Keywords: 1,5-Diarylpyrrole derivatives; Anti-inflammatory agents; Antinociceptive agents; COX-2 inhibitors; Molecular modeling
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Year: 2019 PMID: 31427145 DOI: 10.1016/j.bmc.2019.115045
Source DB: PubMed Journal: Bioorg Med Chem ISSN: 0968-0896 Impact factor: 3.641