[EN] EIF4E INHIBITORS AND USES THEREOF<br/>[FR] INHIBITEURS D'EIF4E ET LEURS UTILISATIONS
申请人:PIC THERAPEUTICS INC
公开号:WO2021178488A1
公开(公告)日:2021-09-10
The present invention provides compounds inhibiting elF4E activity and compositions and methods of using thereof.
本发明提供了抑制elF4E活性的化合物以及使用它们的组合物和方法。
[EN] COMPOUNDS AS INHIBITORS OF MACROPHAGE MIGRATION INHIBITORY FACTOR<br/>[FR] COMPOSÉS EN TANT QU'INHIBITEURS DU FACTEUR INHIBITEUR DE LA MIGRATION DES MACROPHAGES
申请人:IMMUNOPHAGE BIOMEDICAL CO LTD
公开号:WO2020186220A1
公开(公告)日:2020-09-17
The present invention provides compounds of Formula (I) shown above and their pharmaceutically acceptable salt, solvates, isomers, or prodrugs, as well as pharmaceutical compositions containing these compounds. Also provided by the invention is a method for treating a disorder mediated by macrophage migration inhibitory factor in a subject, comprising administering to the subject in need thereof a compound or a pharmaceutical composition of this invention.
Synthesis of a crosslinked polymer with a benzyl(triphenyl)phosphonium ionic liquid moiety and its catalytic activity
作者:Xuezheng Liang
DOI:10.1039/c5ra18507f
日期:——
A novel crosslinked polymer with a benzyl(triphenyl)phosphonium ionic liquid moiety was synthesized from triphenylphosphine and p-xylylene dichloride. The bulky IL molecules were inlaid in the polymeric framework, which avoided pore blocking and IL moiety release. The polymer had a high BET surface area and accessible active sites. The polymer was applied to catalyze the aza-Michael additions and gave
Synthesis and catalytic activity of porous polymer containing ionic liquid structures
作者:Junqiao Li、Wei Lu、Weifeng Li、Xuezheng Liang
DOI:10.1134/s0023158416060082
日期:2016.11
A novel porous polymercontaining ionic liquid (IL) structures was synthesized via quternization and condensation of 4-vinylpyridine and p-xylylene dichloride. The ionic liquidstructures were incorporated in the polymeric framework and for this reason bulky IL molecules can hardly block pores and neutralize active sites. The polymer shows a high BET surface area and easily accessible active sites
作者:Ryan A. Ivanovich、Dilan E. Polat、André M. Beauchemin
DOI:10.1002/adsc.201701046
日期:2017.12.19
Oxygen‐substituted isocyanates (O‐isocyanates) are rare isocyanates with a reported propensity to trimerize, a side‐reaction that severely limited their use in synthesis. Herein, the development of blocked (masked) O‐isocyanate precursors that form this reactive intermediate in situ provide controlled reactivity, allowing the first examples of cascade reactions involving O‐isocyanates. Complex hydroxylamine‐derived