Elzahhar Perihan A, Alaaeddine Rana A, Nassra Rasha, Ismail Azza, Labib Hala F, Temraz Mohamed G, Belal Ahmed S F, El-Yazbi Ahmed F
Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Alexandria University, Alexandria, Egypt.
Department of Pharmacology and Toxicology, Faculty of Medicine and Medical Centre, American University of Beirut, Beirut, Lebanon.
J Enzyme Inhib Med Chem. 2021 Dec;36(1):669-684. doi: 10.1080/14756366.2021.1887169.
The work reported herein describes the synthesis of a new series of anti-inflammatory pyrazolyl thiazolones. In addition to COX-2/15-LOX inhibition, these hybrids exerted their anti-inflammatory actions through novel mechanisms. The most active compounds possessed COX-2 inhibitory activities comparable to celecoxib (IC values of 0.09-0.14 µM) with significant 15-LOX inhibitory activities (ICs 1.96 to 3.52 µM). Upon investigation of their anti-inflammatory activities and ulcerogenic profiles, these compounds showed activity patterns equivalent or more superior to diclofenac and/or celecoxib. Intriguingly, the most active compounds were more effective than diclofenac in suppressing monocyte-to-macrophage differentiation and inflammatory cytokine production by activated macrophages, as well as their ability to induce macrophage apoptosis. The latter finding potentially adds a new dimension to the previously reported anti-inflammatory mechanisms of similar compounds. These compounds were effectively docked into COX-2 and 15-LOX active sites. Also, predictions confirmed the appropriateness of these compounds as drug-like candidates.
本文报道的工作描述了一系列新型抗炎吡唑基噻唑酮的合成。除了抑制COX - 2/15 - LOX外,这些杂合物还通过新机制发挥抗炎作用。活性最强的化合物具有与塞来昔布相当的COX - 2抑制活性(IC值为0.09 - 0.14μM),同时具有显著的15 - LOX抑制活性(IC值为1.96至3.52μM)。在研究它们的抗炎活性和致溃疡特性时,这些化合物表现出与双氯芬酸和/或塞来昔布相当或更优的活性模式。有趣的是,活性最强的化合物在抑制单核细胞向巨噬细胞分化以及活化巨噬细胞产生炎性细胞因子方面比双氯芬酸更有效,并且它们诱导巨噬细胞凋亡的能力也更强。后一发现可能为先前报道的类似化合物的抗炎机制增添了新的维度。这些化合物有效地对接至COX - 2和15 - LOX活性位点。此外,预测证实了这些化合物作为类药物候选物的适宜性。