SYNTHESIS AND BIOLOGICAL-ACTIVITY OF 5-AMINOOXYQUINOLENE AND 5-HYDROXYQUINOLONE, AND THE OVERWHELMING INFLUENCE OF THE REMOTE N1-SUBSTITUENT IN DETERMINING THE STRUCTURE ACTIVITY RELATIONSHIP

被引:67
作者
DOMAGALA, JM
BRIDGES, AJ
CULBERTSON, TP
GAMBINO, L
HAGEN, SE
KARRICK, G
PORTER, K
SANCHEZ, JP
SESNIE, JA
SPENSE, FG
SZOTEK, D
WEMPLE, J
机构
[1] Parke-Davis Pharmaceutical Research Division, Warner-Lambert Company, Ann Arbor
关键词
D O I
10.1021/jm00107a039
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
A series of 5-amino- and 5-hydroxyquinolone antibacterials substituted at C7 with a select group of common piperazinyl and 3-aminopyrrolidinyl side chains was prepared. These 5-substituted derivatives were compared to the analogous 5-hydrogen compounds for antiinfective activity by using DNA gyrase inhibition, minimum inhibitory concentrations against a variety of bacteria, and in vivo efficacy in the mouse infection model. The influence on the structure-activity relationships of varied substituents at C8 (H, F, Cl) and Ni (ethyl, cyclopropyl, difluorophenyl) was also studied. The results showed that several of the structure-activity conclusions regarding side-chain bulk at C7, the effect of halogen at C8, and the effect of the C5-amino group were greatly influenced by the choice of the N1-substituent. Several outstanding broad spectrum quinolones were identified in this work. In particular, the spectrum and potency of the 7-piperazinyl quinolones could be greatly enhanced by the judicious choice of C5-, C8-, and N1-substitutents.
引用
收藏
页码:1142 / 1154
页数:13
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