4-amino substituted phenoxyalkyl carboxylic acid, ester, and alcohol
申请人:Warner-Lambert Company
公开号:US05177106A1
公开(公告)日:1993-01-05
Novel 4-amino substituted phenoxyalkyl carboxylic acid, ester, and alcohol derivatives are described, as well as methods for the preparation and pharmaceutical composition of same, which are useful in preventing the intestinal absorption of cholesterol and thus are useful in the treatment of hypercholesterolemia and atherosclerosis.
[EN] PGD2 RECEPTOR ANTAGONISTS FOR THE TREATMENT OF INFLAMMATORY DISEASES<br/>[FR] ANTAGONISTES DE RECEPTEUR DE LA PROSTAGLANDINE D2 POUR LE TRAITEMENT DE MALADIES INFLAMMATOIRES
申请人:MILLENNIUM PHARM INC
公开号:WO2005100321A1
公开(公告)日:2005-10-27
Disclosed herein are compounds represented by Structural Formula: (I) and (I-A). Also disclosed is the use of such compounds for inhibiting the G-protein coupled receptor referred to as chemoattractant receptor-homologous molecule expressed on Th2, or simply 'CRTH2' for the treatment of inflammatory disorders. The variables in Structural Formula (I) and (I-A) are defined herein.
Ketamine esters and amides as short-acting anaesthetics: Structure-activity relationships for the side-chain
作者:Ivaylo V. Dimitrov、Martyn G. Harvey、Logan J. Voss、James W. Sleigh、Michael J. Bickerdike、William A. Denny
DOI:10.1016/j.bmc.2019.02.010
日期:2019.4
N-Aliphatic ester analogues of the non-opioid ketamine (1) retain effective anaesthetic/analgesic properties while minimising ketamine's psychomimetic side-effects. We show that the anaesthetic/analgesic properties of these ester analogues depend critically on the length (from 2 to 4 carbons), polarity and steric cross-section of the aliphatic linker chain. More stable amide and ethylsulfone analogues generally
Novel substituted arylene compounds and methods for their preparation and use are disclosed. These new compounds are useful as anti-arteriosclerotic agents.
插入芳基化合物的新颖替代物以及它们的制备和使用方法已被披露。这些新化合物可用作抗动脉粥样硬化药物。
Efficient Targeted Degradation via Reversible and Irreversible Covalent PROTACs
Proteolysis targeting chimeras (PROTACs) represent an exciting inhibitory modality with many advantages, including substoichiometric degradation of targets. Their scope, though, is still limited to date by the requirement for a sufficiently potenttargetbinder. A solution that proved useful in tackling challenging targets is the use of electrophiles to allow irreversible binding to the target. However