[EN] ARYLCYCLOHEXYL PYRAZOLES AS NRF2 REGULATORS<br/>[FR] PYRAZOLES D'ARYLCYCLOHÉXYLE UTILISÉS EN TANT QUE RÉGULATEURS DE NRF2
申请人:GLAXOSMITHKLINE IP DEV LTD
公开号:WO2017060855A1
公开(公告)日:2017-04-13
The present invention relates to arylcyclohexyl pyrazole compounds, methods of making them, pharmaceutical compositions containing them and their use as NRF2 regulators.
这项发明涉及芳基环己基吡唑化合物,制备方法,含有它们的药物组合物以及它们作为NRF2调节剂的用途。
Arylcyclohexyl pyrazoles as NRF2 regulators
申请人:GlaxoSmithKline Intellectual Property Development Limited
公开号:US10351530B2
公开(公告)日:2019-07-16
The present invention relates to arylcyclohexyl pyrazole compounds of Formula (I)
methods of making them, pharmaceutical compositions containing them and their use as NRF2 regulators.
申请人:GlaxoSmithKline Intellectual Property Development
Limited
公开号:EP3371167A1
公开(公告)日:2018-09-12
Fragment-Guided Discovery of Pyrazole Carboxylic Acid Inhibitors of the Kelch-like ECH-Associated Protein 1: Nuclear Factor Erythroid 2 Related Factor 2 (KEAP1:NRF2) Protein−Protein Interaction
作者:David Norton、William G. Bonnette、James F. Callahan、Maria G. Carr、Charlotte M. Griffiths-Jones、Tom D. Heightman、Jeffrey K. Kerns、Hong Nie、Sharna J. Rich、Caroline Richardson、William Rumsey、Yolanda Sanchez、Marcel L. Verdonk、Henriëtte M. G. Willems、William E. Wixted、Lawrence Wolfe、Alison J.-A. Woolford、Zining Wu、Thomas G. Davies
DOI:10.1021/acs.jmedchem.1c01351
日期:2021.11.11
oxidative stress. The protein KEAP1, which regulates NRF2, is a key point for pharmacological intervention, and we recently described the use of fragment-based drug discovery to develop a tool compound that directly disrupts the protein−protein interactionbetweenNRF2 and KEAP1. We now present the identification of a second, chemically distinct series of KEAP1inhibitors, which provided an alternative