Chemical synthesis, biological evaluation and structure–activity relationship analysis of azaisoindolinones, a novel class of direct enoyl-ACP reductase inhibitors as potential antimycobacterial agents
摘要:
The synthesis and biological evaluation of azaisoindolinone compounds embedding a lipophilic chain on the framework were performed. These compounds were designed as InhA inhibitors and as anti-Mycobacterium tuberculosis agents. Structure-activity relationships concerning the length and the location of the lipophilic chain around the azaisoindolinone framework, the suppression of the phenyl group, the bioisosteric substitution of ether link and alkylating of the tertiary hydroxyl and the hemiamidal nitrogen were also investigated, revealing insightful information and thereby enabling further diversification of the azaisoindolinone scaffold for new antitubercular agents. (C) 2011 Elsevier Ltd. All rights reserved.
Chemical synthesis, biological evaluation and structure–activity relationship analysis of azaisoindolinones, a novel class of direct enoyl-ACP reductase inhibitors as potential antimycobacterial agents
摘要:
The synthesis and biological evaluation of azaisoindolinone compounds embedding a lipophilic chain on the framework were performed. These compounds were designed as InhA inhibitors and as anti-Mycobacterium tuberculosis agents. Structure-activity relationships concerning the length and the location of the lipophilic chain around the azaisoindolinone framework, the suppression of the phenyl group, the bioisosteric substitution of ether link and alkylating of the tertiary hydroxyl and the hemiamidal nitrogen were also investigated, revealing insightful information and thereby enabling further diversification of the azaisoindolinone scaffold for new antitubercular agents. (C) 2011 Elsevier Ltd. All rights reserved.
NOVEL ANTI-INFECTIOUS DERIVATIVES, METHOD FOR THE PRODUCTION THEREOF, PHARMACEUTICAL COMPOSITIONS CONTAINING SAME AND USES OF SAID DERIVATIVES IN TREATMENT
申请人:Bernadou Jean
公开号:US20110092536A1
公开(公告)日:2011-04-21
The invention relates to bi-substrate inhibitor molecules associating (i) a pyridine, pyridinium or dihydropyridine-type structure allied to active metabolites of isoniazide, or related structures, and (ii) a hydrophobic substituent. The invention also relates to the method for producing said molecules, to the pharmaceutical compositions containing said molecules, and to the use thereof as inhibitors of enoyl reductase for the preparation of a medicament, especially an anti-infectious medicament for the treatment of tuberculosis.
NOUVEAUX DÉRIVÉS ANTI-INFECTIEUX, LEUR PROCÉDÉ DE PRÉPARATION, COMPOSITIONS PHARMACEUTIQUES LES CONTENANT ET LEURS UTILISATIONS EN THÉRAPEUTIQUE
申请人:Centre National de la Recherche Scientifique -
CNRS
公开号:EP2240449A1
公开(公告)日:2010-10-20
US8710073B2
申请人:——
公开号:US8710073B2
公开(公告)日:2014-04-29
[EN] NOVEL ANTI-INFECTIOUS DERIVATIVES, METHOD FOR THE PRODUCTION THEREOF, PHARMACEUTICAL COMPOSITIONS CONTAINING SAME AND USES OF SAID DERIVATIVES IN TREATMENT<br/>[FR] NOUVEAUX DÉRIVÉS ANTI-INFECTIEUX, LEUR PROCÉDÉ DE PRÉPARATION, COMPOSITIONS PHARMACEUTIQUES LES CONTENANT ET LEURS UTILISATIONS EN THÉRAPEUTIQUE
申请人:CENTRE NAT RECH SCIENT
公开号:WO2009101345A1
公开(公告)日:2009-08-20
La présente invention est relative à des molécules d'inhibiteurs bi-substrats associant (i) une structure apparentée aux métabolites actifs de l'isoniazide et de type pyridine, pyridinium ou dihydropyridine ou structures apparentées et (ii) un substituant hydrophobe, à leur procédé de préparation, aux compositions pharmaceutiques les contenant et à leur utilisation à titre d'inhibiteur d'énoylréductase pour la préparation d'un médicament, notamment d'un médicament anti-infectieux pour le traitement de la tuberculose.
Chemical synthesis, biological evaluation and structure–activity relationship analysis of azaisoindolinones, a novel class of direct enoyl-ACP reductase inhibitors as potential antimycobacterial agents
The synthesis and biological evaluation of azaisoindolinone compounds embedding a lipophilic chain on the framework were performed. These compounds were designed as InhA inhibitors and as anti-Mycobacterium tuberculosis agents. Structure-activity relationships concerning the length and the location of the lipophilic chain around the azaisoindolinone framework, the suppression of the phenyl group, the bioisosteric substitution of ether link and alkylating of the tertiary hydroxyl and the hemiamidal nitrogen were also investigated, revealing insightful information and thereby enabling further diversification of the azaisoindolinone scaffold for new antitubercular agents. (C) 2011 Elsevier Ltd. All rights reserved.