Tricyclic pharmacophore-based molecules as novel integrin αvβ3 antagonists. Part III: Synthesis of potent antagonists with αvβ3/αIIbβ3 dual activity and improved water solubility
摘要:
In order to optimize our novel integrin alpha(v)beta(3)/alpha(IIb)beta(3) dual antagonists, spatial screening at the N-terminus was performed. The alpha(v)beta(3) antagonistic activity varied depending on the space that was occupied by the N-terminus, but high potency against alpha(IIb)beta(3) was well maintained. The (3S)-aminopiperidine analogue had the strongest activity against alpha(v)beta(3), and the S isomer at piperidine was more potent than the R isomer. Compounds selected on the basis of SAR analysis of a novel lead compound showed acceptable early absorption, distribution, metabolism, excretion, and toxicity (ADMET) profiles and sufficient water solubility for use as infusion drugs. Docking studies with the alpha(v)beta(3) receptor were performed to confirm the SAR findings. (c) 2005 Elsevier Ltd. All rights reserved.
Remedies for reperfusion injury containing integrin alphanubeta 3 antagonist
申请人:——
公开号:US20030040531A1
公开(公告)日:2003-02-27
An objective of the present invention is to provide an agent that is clinically effective in the treatment or prevention of reperfusion injury. The agent for use in the treatment or prevention of reperfusion injury according to the present invention comprises an integrin &agr;
v
&bgr;
3
antagonist, a pharmaceutically acceptable salt thereof, or a solvate thereof as active ingredient.
3-AMINOPIPERIDINE DERIVATIVES AS INTEGRIN $g(a)v$g(b)3 ANTAGONISTS
申请人:Meiji Seika Kaisha, Ltd.
公开号:EP1227083A1
公开(公告)日:2002-07-31
An object of the present invention is to provide novel derivatives having integrin αvβ3 antagonistic activity wherein a basic atomic group has been attached to the 3-position of a piperidine ring either directly or through various atomic groups. The derivatives according to the present invention are compounds represented by formula (I) or pharmaceutically acceptable salts or solvates thereof, which are useful for the treatment or prevention of cardiovascular diseases, angiogenesis-related diseases, cerebrovascular diseases, cancers and metastasis thereof, immunological diseases, osteopathy and other diseases:
wherein A represents an optionally substituted heterocyclic group containing at least one nitrogen atom, a bicylic group or the like; D represents a bond, >NR4, >CR5R6, O, S, or -NR4-CR5R6-; Z represents CH or N; R7 and R8 represent hydroxyl, alkyl or the like; Q represents >C=O or the like; R9 represents hydrogen, alkyl or the like; J represents a bond or alkylene; R10 represents optionally substituted hydroxyl, amino or the like; R11 represents hydrogen, alkyl or the like; m is 0 to 5; n is 0 to 4; p is 3 or 4; and q is 0 to 3.
REMEDIES FOR REPERFUSION INJURY CONTAINING INTEGRIN ALPHAvBETA3 ANTAGONIST
申请人:Meiji Seika Kaisha, Ltd.
公开号:EP1250935A1
公开(公告)日:2002-10-23
An objective of the present invention is to provide an agent that is clinically effective in the treatment or prevention of reperfusion injury. The agent for use in the treatment or prevention of reperfusion injury according to the present invention comprises an integrin αvβ3 antagonist, a pharmaceutically acceptable salt thereof, or a solvate thereof as active ingredient.
Tricyclic pharmacophore-based molecules as novel integrin αvβ3 antagonists. Part III: Synthesis of potent antagonists with αvβ3/αIIbβ3 dual activity and improved water solubility
In order to optimize our novel integrin alpha(v)beta(3)/alpha(IIb)beta(3) dual antagonists, spatial screening at the N-terminus was performed. The alpha(v)beta(3) antagonistic activity varied depending on the space that was occupied by the N-terminus, but high potency against alpha(IIb)beta(3) was well maintained. The (3S)-aminopiperidine analogue had the strongest activity against alpha(v)beta(3), and the S isomer at piperidine was more potent than the R isomer. Compounds selected on the basis of SAR analysis of a novel lead compound showed acceptable early absorption, distribution, metabolism, excretion, and toxicity (ADMET) profiles and sufficient water solubility for use as infusion drugs. Docking studies with the alpha(v)beta(3) receptor were performed to confirm the SAR findings. (c) 2005 Elsevier Ltd. All rights reserved.