期刊
EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY
卷 40, 期 9, 页码 875-881出版社
ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.ejmech.2005.03.013
关键词
antimalarial; Plasmodium berghei; haem; hemoglobin
A series of E-2-quinolinylbenzocycloalkanones 5-21 were prepared and evaluated for their activity to inhibit beta-hematim formation and the hydrolysis of hemoglobin in vitro. Positive compounds for both assays were also tested for their efficacy in rodent Plasmodium berghei. Compounds 6, 16, 19, and 20, were the most promising. Inhibition of beta-hematin formation was minimal when a hydrogen or methoxy groups were present on the position 8 of the quinoline and position 4' of the indanone ring as it appeared for compounds 5, 7-15, 17, 18, and 21, and greatest with compounds (52%) and (90%) with a substitution of methoxy on position 6 and 7 or methyl on position 8 of the quinoline nucleus and methoxy or methyl groups on position 4' of the indanone. The most active compound to emerge from this study is 2-chloro-8-methyl-3-[(4'-methoxy-1'-indanoyl)-2'-methylidenl-quinoline 20 effective as antimalarial that target P-hematin formation and the inhibition of the hydrolysis of hemoglobin in vitro together with a good survival in a murine malaria model, which should help delay the rapid onset of resistance to drugs acting at only a single site. Results with these assays suggest that quinolinylbenzocycloalkanones exert their antimalarial activity via multiple mechanisms. (c) 2005 Elsevier SAS. All rights reserved.
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