[EN] SUBSTITUTED CYCLOLAKYLS AS MODULATORS OF THE INTEGRATED STRESS PATHWAY<br/>[FR] CYCLOLALKYLES SUBSTITUÉS EN TANT QUE MODULATEURS DE LA VOIE DE STRESS INTÉGRÉE
申请人:CALICO LIFE SCIENCES LLC
公开号:WO2020223536A1
公开(公告)日:2020-11-05
Provided herein are compounds, compositions, and methods useful for modulating the integrated stress response (ISR) and for treating related diseases, disorders and conditions.
本文提供了用于调节综合应激反应(ISR)并治疗相关疾病、疾病和症状的化合物、组合物和方法。
[EN] CYCLIC COMPOUNDS AND METHODS OF USING SAME<br/>[FR] COMPOSÉS CYCLIQUES ET LEURS PROCÉDÉS D'UTILISATION
申请人:SCHRODINGER INC
公开号:WO2021134004A1
公开(公告)日:2021-07-01
The present application relates to compounds of Formula (I), as defined herein, and pharmaceutically acceptable salts thereof which are MALT1 inhibitors. The present application also describes pharmaceutical composition comprising a compound of Formula (I), and pharmaceutically acceptable salts thereof, and methods of using the compounds and compositions for treating diseases, such as cancer, autoimmune disorders, and inflammatory disorders.
Difluoromethyl Nitrile Oxide (CF<sub>2</sub>HCNO): A Neglected Chemical Reagent
作者:Andrii Khutorianskyi、Bohdan Chalyk、Petro Borysko、Anna Kondratiuk、Pavel K. Mykhailiuk
DOI:10.1002/ejoc.201700764
日期:2017.7.25
A novel chemical reagent – difluoromethyl nitrile oxide, CF2HCNO – was generated in situ for the first time. The synthesis commenced with ethyl difluoroacetate and included only two chemical steps. The difluoromethyl nitrile oxide smoothly participated in [3+2]-cycloaddition reactions with alkynes and enamines to give CF2H-isoxazoles; these products are promising cores for agrochemistry. A representative
Regioselective Synthesis of Functionalized 3- or 5-Fluoroalkyl Isoxazoles and Pyrazoles from Fluoroalkyl Ynones and Binucleophiles
作者:Bohdan A. Chalyk、Andrii Khutorianskyi、Andrii Lysenko、Yulia Fil、Yuliya O. Kuchkovska、Konstantin S. Gavrilenko、Iulia Bakanovych、Yurii S. Moroz、Alina O. Gorlova、Oleksandr O. Grygorenko
DOI:10.1021/acs.joc.9b02258
日期:2019.12.6
A facile synthetic route toward either 3- or 5-fluoroalkyl-substituted isoxazoles or pyrazoles containing an additional functionalization site was developed and applied on a multigram scale. The elaborated approach extends the scope of fluoroalkyl substituents for introduction into the heterocyclic moiety, and uses convenient transformations of the side chain for incorporation of fluoroalkyl-substituted