| Literature DB >> 30293795 |
Ana Daura Travassos de Oliveira Moraes1, Mirelly Dianne Santos de Miranda1, Íris Trindade Tenório Jacob1, Cézar Augusto da Cruz Amorim1, Ricardo Olímpio de Moura2, Simone Ângela Soares da Silva2, Milena Botelho Pereira Soares3, Sinara Mônica Vitalino de Almeida4, Túlio Ricardo Couto de Lima Souza5, Jamerson Ferreira de Oliveira1, Teresinha Gonçalves da Silva1, Cristiane Moutinho Lagos de Melo1, Diogo Rodrigo Magalhães Moreira3, Maria do Carmo Alves de Lima6.
Abstract
The objective of this work was to obtain and evaluate anti-inflammatory in vitro, in vivo and in silico potential of novel indole-N-acylhydrazone derivatives. In total, 10 new compounds (3a-j) were synthesized in satisfactory yields, through a condensation reaction in a single synthesis step. In the lymphoproliferation assay, using mice splenocytes, 3a and 3b showed inhibition of lymphocyte proliferation of 62.7% (±3.5) and 50.7% (±2), respectively, while dexamethasone presented an inhibition of 74.6% (±2.4). Moreover, compound 3b induced higher Th2 cytokines production in mice splenocytes cultures. The results for COX inhibition assays showed that compound 3b is a selective COX-2 inhibitor, but with less potency when compared to celecoxib, and compound 3a not presented selectivity towards COX-2. The molecular docking results suggest compounds 3a and 3b interact with the active site of COX-2 in similar conformations, but not with the active site of COX-1, and this may be the main reason to the COX-2 selectivity of compound 3b. In vivo carrageenan-induced paw edema assays were adopted for the confirmation of the anti-inflammatory activity. Compound 3b showed better results in suppressing edema at all tested concentrations and was able to induce an edema inhibition of 100% after 5 h of carrageenan injection at the 30 mg kg-1 dosage, corroborating with the COX inhibition and lymphoproliferation results. I addition to our experimental results, in silico analysis suggest that compounds 3a and 3b present a well-balanced profile between pharmacodynamics and pharmacokinetics. Thus, our preliminary results revealed the potentiality of a new COX-2 selective derivative in the modulation of the inflammatory process.Entities:
Keywords: COX; Docking; Indoles; Inflammation; N-Acylhydrazones
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Year: 2018 PMID: 30293795 DOI: 10.1016/j.bmc.2018.07.024
Source DB: PubMed Journal: Bioorg Med Chem ISSN: 0968-0896 Impact factor: 3.641