[EN] HETEROCYCLIC AMIDE DERIVATIVES AS P2X7 RECEPTOR ANTAGONISTS<br/>[FR] DÉRIVÉS D'AMIDE HÉTÉROCYCLIQUE COMME ANTAGONISTES DU RÉCEPTEUR P2X7
申请人:ACTELION PHARMACEUTICALS LTD
公开号:WO2013108227A1
公开(公告)日:2013-07-25
The invention relates to heterocyclic amide derivatives of formula (I), wherein R1, R2, R3, X and n are as defined in the description, their preparation and their use as pharmaceutically active compounds.
HETEROCYCLIC AMIDE DERIVATIVES AS P2X7 RECEPTOR ANTAGONISTS
申请人:ACTELION PHARMACEUTICALS LTD
公开号:US20150025075A1
公开(公告)日:2015-01-22
The invention relates to heterocyclic amide derivatives of formula (I),
wherein R
1
, R
2
, R
3
, X and n are as defined in the description, their preparation and their use as pharmaceutically active compounds.
Disclosed are compounds of Formula (I), or pharmaceutically acceptable salts thereof, wherein W, Y, Z, R
1
, R
2
, R
3
and R
4
are as described in this application, and methods of using the compounds in the treatment of cancer.
Ru(II)-Catalyzed Regioselective Redox-Neutral [4 + 2] Annulation of <i>N</i>-Chlorobenzamides with 1,3-Diynes at Room Temperature for the Synthesis of Isoquinolones
作者:Arijit Ghosh、Goraksha T. Sapkal、Amit B. Pawar
DOI:10.1021/acs.joc.3c00175
日期:——
Herein, we report Ru(II)-catalyzed C–H/N–H bond functionalization of N-chlorobenzamides with 1,3-diynes via regioselective (4 + 2) annulation for the synthesis of isoquinolones under redox-neutral conditions at roomtemperature. This represents the first example of C–H functionalization of N-chlorobenzamides using an inexpensive and commercially available [Ru(p-cymene)Cl2]2 catalyst. The reaction is
Dipeptidyl ketoamide compounds and their use for the treatment and/or prevention of fat accumulation
申请人:LANDSTEINER GENMED, S.L.
公开号:US10294269B2
公开(公告)日:2019-05-21
The present invention relates to the use of dipeptidyl ketoamide compounds for preventing accumulation of triglycerides in adipose tissue or for reducing the amount of triglycerides in adipose tissue in a subject in need thereof and to novel dipeptidyl ketoamide compounds.