Novel isoxazole carboxamides as growth hormone secretagogue receptor (GHS-R) antagonists
摘要:
Novel isoxazole carboxamides have been identified as growth hormone secretagogue receptor (GHS-R) antagonists. Substituent modification off the 5-position of the isoxazole ring led to analogues with potent binding affinity and functional antagonism of GHS-R. A potent analogue (32) with high aqueous solubility and good GPCR selectivity was also identified as a potential pharmacological tool for in vivo studies. (C) 2004 Elsevier Ltd. All rights reserved.
Novel isoxazole carboxamides as growth hormone secretagogue receptor (GHS-R) antagonists
摘要:
Novel isoxazole carboxamides have been identified as growth hormone secretagogue receptor (GHS-R) antagonists. Substituent modification off the 5-position of the isoxazole ring led to analogues with potent binding affinity and functional antagonism of GHS-R. A potent analogue (32) with high aqueous solubility and good GPCR selectivity was also identified as a potential pharmacological tool for in vivo studies. (C) 2004 Elsevier Ltd. All rights reserved.
Compounds of formula (I): wherein the substituents are as defined in the specification, are described and claimed. The invention further relates to pharmaceutical compositions containing said compounds and to the use of said compounds in therapy. The present invention also relates to processes for the preparation of said compounds.
Isoxazole carboxamide derivatives as ghrelin receptor modulators
申请人:Liu Gang
公开号:US20060089398A1
公开(公告)日:2006-04-27
The present invention is related to compounds of formula (I),
or a therapeutically suitable salt or prodrug thereof, the preparation of the compounds, compositions containing the compounds and the use of the compounds in the prevention or treatment of disorders regulated by ghrelin including anorexia, cancer cachexia, eating disorders, age-related decline in body composition, weight gain, obesity, and diabetes mellitus.
Phenyl isoxazole voltage-gated sodium channel blockers: Structure and activity relationship
作者:Istvan Macsari、Lars Sandberg、Yevgeni Besidski、Ylva Gravenfors、Tobias Ginman、Johan Bylund、Tjerk Bueters、Anders B. Eriksson、Per-Eric Lund、Elisabet Venyike、Per I. Arvidsson
DOI:10.1016/j.bmcl.2011.05.041
日期:2011.7
Blocking of certain sodium channels is considered to be an attractive mechanism to treat chronic pain conditions. Phenyl isoxazole carbamate 1 was identified as a potent and selective NaV1.7 blocker. Structural analogues of 1, both carbamates, ureas and amides, were proven to be useful in establishing the structure–activity relationship and improving ADME related properties. Amide 24 showed a good
某些钠通道的阻塞被认为是治疗慢性疼痛状况的一种有吸引力的机制。苯基异恶唑氨基甲酸酯1被确定为有效的和选择性的Na V 1.7阻滞剂。1的结构类似物(氨基甲酸酯,尿素和酰胺)被证明可用于建立结构与活性的关系并改善ADME相关的性能。酰胺24表现出良好的整体体外特性,可以很好地转化为大鼠体内PK。