[EN] AMINES AND AMIDES FOR THE TREATMENT OF DISEASES [FR] ACTIVITÉ ENZYMATIQUE D'INHIBITEURS D'AMINE OXIDASE À BASE D'AMINE ET D'AMIDE SENSIBLE AUX SEMICARBAZIDES (SSAO), ET ADHÉSION INDUITE PAR VAP-1 UTILE POUR LE TRAITEMENT DE MALADIES
Amine-based and amide-based inhibitors of semicarbazide-sensitive amine oxidase (SSAO)enzyme activity and VAP-1 mediated adhesion useful for treatment of diseases
申请人:Salter-Cid M. Luisa
公开号:US20070078157A1
公开(公告)日:2007-04-05
Compositions and methods are disclosed for inhibiting semicarbazide-sensitive amine oxidase (SSAO), also known as vascular adhesion protein-1 (VAP-1). The compounds disclosed are amine-containing and amide-containing compounds. The compounds and compositions are useful for treatment of diseases, including inflammation, inflammatory diseases and autoimmune disorders.
AMINE-BASED AND AMIDE-BASED INHIBITORS OF SEMICARBAZIDE-SENSITIVE AMINE OXIDASE (SSAO) ENZYME ACTIVITY AND VAP-1 MEDIATED ADHESION USEFUL FOR TREATMENT OF DISEASES
申请人:SALTER-CID LUISA M.
公开号:US20120172392A1
公开(公告)日:2012-07-05
Compositions and methods are disclosed for inhibiting semicarbazide-sensitive amine oxidase (SSAO), also known as vascular adhesion protein-1 (VAP-1). The compounds disclosed are amine-containing and amide-containing compounds. The compounds and compositions are useful for treatment of diseases, including inflammation, inflammatory diseases and autoimmune disorders.
[EN] AMINES AND AMIDES FOR THE TREATMENT OF DISEASES<br/>[FR] ACTIVITÉ ENZYMATIQUE D'INHIBITEURS D'AMINE OXIDASE À BASE D'AMINE ET D'AMIDE SENSIBLE AUX SEMICARBAZIDES (SSAO), ET ADHÉSION INDUITE PAR VAP-1 UTILE POUR LE TRAITEMENT DE MALADIES
申请人:JOLLA PHARMA
公开号:WO2005082343A3
公开(公告)日:2006-01-12
Synthesis of β-CF3 ketones from trifluoromethylated allylic alcohols by ruthenium catalyzed isomerization
This work describes the optimization process for the synthesis of β-trifluoromethylated ketonesfrom trifluoromethylated allylicalcohols. This transformation proceeds through a ruthenium catalyzed isomerization under mild conditions with high atom economy. The effect of the CF3 group was analyzed and it provides fundamental insights into the isomerization reaction.