Disclosed are thiazolyl-dihydro-quinazolines of general formula (I)
wherein the groups R
1
to R
4
have the meanings given in the claims and specification, the isomers thereof, and processes for preparing these compounds and their use as pharmaceutical compositions.
The present invention provides compounds of Formula (I) that are useful for modulating the biological activity of the melanocortin-5 receptor (MC5R). Compounds of this invention can be used to treat diseases and/or conditions in which downregulation of MC5R is beneficial. Such diseases and/or conditions include, but are not limited to, acne, seborrhea, seborrheic dermatitis, cancer, and inflammatory diseases.
[EN] AMINO - PYRIMIDINE COMPOUNDS AS INHIBITORS OF TBKL AND/OR IKK EPSILON<br/>[FR] COMPOSÉS D'AMINO-PYRIMIDINE EN TANT QU'INHIBITEURS DE TBKL ET OU D'IKK EPSILON
申请人:MYREXIS INC
公开号:WO2011046970A1
公开(公告)日:2011-04-21
The invention relates to certain amino-pyrimidine compounds which inhibit TBK1 and/or IKK epsilon and which may therefore find application in treating inflammation, cancer, septic shock and/or Primary open Angle Glaucoma (POAG).
Central Cholinergic Agents. I. Potent Acethlcholinesterase Inhibitors, 2-(.OMEGA.-(N-Alkyl-N-(.OMEGA.-phenyl-alkyl)amino)alkyl)-1H-isoindole-1,3(2H)-diones, Based on a New Hypothesis of the Enzyme's Active Site.
作者:Yuji ISHIHARA、Koki KATO、Giichi GOTO
DOI:10.1248/cpb.39.3225
日期:——
It has been suggested that the active site of acetylcholinesterase contains a hydrophobic binding site (HBS-1), which is closely adjacent to both the anionic and the esteratic sites. In this paper, we assumed that there exists another hydrophobic binding site (HBS-2), some distance removed from the anionic site. On this assumption, a new working hypothesis was proposed for the design of acetylcholinesterase inhibitors. A series of 2-[ω-[N-alkyl-N-(ω-phenyl-alkyl)amino]alkyl]-1H-isoindole-1, 3(2H)-diones was designed based on this hypothesis and tested for its inhibitory activities on acetylcholinesterase. Some in this series were revealed to be more potent than physostigmine. Optimum activity was found to be associated with a five carbon chain length separating the benzylamino group from the 1H-isoindole-1, 3(2H)-dione (phthalimide) moiety. Quantitative study of substitution effect on the phthalimide moiety revealed that hydrophilic and electron-withdrawing groups enhance the activity.
Cationic platinum(II) complexes with bi- or tridentate (pincer) functionalized NHC ligands were found to be catalytically active in the hydroamination of unactivated alkenes. In some cases, the presence of water had an activating effect on the complexes. Reactions with the N-nucleophilic substrate morpholine led to a noncatalytic reaction in which the deprotonation product of the key cationic β-aminoalkyl