Chemical Modulation of the 1-(Piperidin-4-yl)-1,3-dihydro-2H-benzo[d]imidazole-2-one Scaffold as a Novel NLRP3 Inhibitor

药效团 咪唑 化学 炎症体 上睑下垂 体外 苯并呋喃 立体化学 生物化学 组合化学 受体
作者
Stefania Gastaldi,Valentina Boscaro,Eleonora Gianquinto,Christina F. Sandall,Marta Giorgis,Elisabetta Marini,Federica Blua,Margherita Gallicchio,Francesca Spyrakis,Justin A. MacDonald,Massimo Bertinaria
出处
期刊:Molecules [MDPI AG]
卷期号:26 (13): 3975-3975 被引量:10
标识
DOI:10.3390/molecules26133975
摘要

In the search for new chemical scaffolds able to afford NLRP3 inflammasome inhibitors, we used a pharmacophore-hybridization strategy by combining the structure of the acrylic acid derivative INF39 with the 1-(piperidin-4-yl)1,3-dihydro-2H-benzo[d]imidazole-2-one substructure present in HS203873, a recently identified NLRP3 binder. A series of differently modulated benzo[d]imidazole-2-one derivatives were designed and synthesised. The obtained compounds were screened in vitro to test their ability to inhibit NLRP3-dependent pyroptosis and IL-1β release in PMA-differentiated THP-1 cells stimulated with LPS/ATP. The selected compounds were evaluated for their ability to reduce the ATPase activity of human recombinant NLRP3 using a newly developed assay. From this screening, compounds 9, 13 and 18, able to concentration-dependently inhibit IL-1β release in LPS/ATP-stimulated human macrophages, emerged as the most promising NLRP3 inhibitors of the series. Computational simulations were applied for building the first complete model of the NLRP3 inactive state and for identifying possible binding sites available to the tested compounds. The analyses led us to suggest a mechanism of protein–ligand binding that might explain the activity of the compounds.
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