851164-65-3Relevant academic research and scientific papers
Metal-Binding Pharmacophore Library Yields the Discovery of a Glyoxalase 1 Inhibitor
Perez, Christian,Barkley-Levenson, Amanda M.,Dick, Benjamin L.,Glatt, Peter F.,Martinez, Yadira,Siegel, Dionicio,Momper, Jeremiah D.,Palmer, Abraham A.,Cohen, Seth M.
, p. 1609 - 1625 (2019)
Anxiety and depression are common, highly comorbid psychiatric diseases that account for a large proportion of worldwide medical disability. Glyoxalase 1 (GLO1) has been identified as a possible target for the treatment of anxiety and depression. GLO1 is a Zn2+-dependent enzyme that isomerizes a hemithioacetal, formed from glutathione and methylglyoxal, to a lactic acid thioester. To develop active inhibitors of GLO1, fragment-based drug discovery was used to identify fragments that could serve as core scaffolds for lead development. After screening a focused library of metal-binding pharmacophores, 8-(methylsulfonylamino)quinoline (8-MSQ) was identified as a hit. Through computational modeling and synthetic elaboration, a potent GLO1 inhibitor was developed with a novel sulfonamide core pharmacophore. A lead compound was demonstrated to penetrate the blood-brain barrier, elevate levels of methylglyoxal in the brain, and reduce depression-like behavior in mice. These findings provide the basis for GLO1 inhibitors to treat depression and related psychiatric illnesses.
Visible light induced regioselective C5 halogenation of 8-aminoquinolines with 1,3-dihalo-5,5-dimethylhydantoin in continuous flow
Shu, Quan,Li, Yaming,Liu, Tong,Zhang, Siyu,Jiang, Linlin,Jin, Kun,Zhang, Rong,Duan, Chunying
supporting information, p. 3636 - 3642 (2019/05/29)
An efficient and convenient method for remote C5 halogenation of 8-aminoquinoline derivatives was developed in continuous flow at room temperature. This method employed inexpensive 1,3-dibromo-5,5-dimethylhydantoin (DBDMH) and 1,3-dichlro-5,5-dimethylhyda
Regioselective remote C–H fluoroalkylselenolation of 8-aminoquinolines
Ghiazza, Clément,Ndiaye, Moussa,Hamdi, Anfal,Tlili, Anis,Billard, Thierry
, p. 6521 - 6526 (2018/10/05)
Herein, the direct C-5 fluoroalkylselenolation of 8-aminoquinolines is described. The Pd-catalyzed reaction is performed with the in situ generated fluoroalkylselenyl chloride and various 8-aminoquinoline amides or sulfonamides. The desired products were
Cobalt Catalyzed C-H and N-H Bond Annulation of Sulfonamide with Terminal and Internal Alkynes
Kalsi, Deepti,Sundararaju, Basker
supporting information, p. 6118 - 6121 (2016/01/09)
Chelate assisted cobalt catalyzed C-H and N-H annulation of aryl sulfonamide with terminal and internal alkynes is reported. Very high regioselectivity and excellent functional group tolerance were achieved using oxygen as a co-oxidant. The reaction is scalable under mild conditions.
Sulfonamidoquinoline/palladium(II)-dimer complex as a catalyst precursor for palladium-catalyzed γ-Selective and stereospecific allyl-aryl coupling reaction between allylic acetates and arylboronic acids
Makida, Yusuke,Ohmiya, Hirohisa,Sawamura, Masaya
supporting information; experimental part, p. 410 - 414 (2011/10/03)
On neutral territory: A neutral palladium(II)-dimer catalyst system incorporating anionic sulfonamidoquinoline ligands is effective for the γ-selective and stereospecific allyl-aryl coupling between acyclic (E)-allylic acetates and arylboronic acids. Copy
From sensors to silencers: Quinoline- and benzimidazole-sulfonamides as inhibitors for zinc proteases
Rouffet, Matthieu,De Oliveira, Cesar Augusto F.,Udi, Yael,Agrawal, Arpita,Sagi, Irit,McCammon, J. Andrew,Cohen, Seth M.
supporting information; experimental part, p. 8232 - 8233 (2010/08/05)
Derived from the extensive work in the area of small molecule zinc(II) ion sensors, chelating fragment libraries of quinoline- and benzimidazole- sulfonamides have been prepared and screened against several different zinc(II)-dependent matrix metalloproteinases (MMPs). The fragments show impressive inhibition of these metalloenzymes and preferences for different MMPs based on the nature of the chelating group. The findings show that focused chelator libraries are a powerful strategy for the discovery of lead fragments for metalloprotein inhibition.
