Targeting Mycolic Acid Transport by Indole-2-carboxamides for the Treatment of <i>Mycobacterium abscessus</i> Infections
作者:Alan P. Kozikowski、Oluseye K. Onajole、Jozef Stec、Christian Dupont、Albertus Viljoen、Matthias Richard、Tridib Chaira、Shichun Lun、William Bishai、V. Samuel Raj、Diane Ordway、Laurent Kremer
DOI:10.1021/acs.jmedchem.7b00582
日期:2017.7.13
MmpL3. Biochemical analyses demonstrated that while de novo mycolic acid synthesis remained unaffected, the indolecarboxamides strongly inhibited the transport of trehalose monomycolate, resulting in the loss of trehalose dimycolate production and abrogating mycolylation of arabinogalactan. Our data introduce a hereto unexploited chemical structure class active against M. abscessus infections with promising
[EN] INHIBITORS OF DRUG-RESISTANT MYCOBACTERIUM TUBERCULOSIS<br/>[FR] INHIBITEURS DE MYCOBACTERIUM TUBERCULOSIS RÉSISTANT AUX MÉDICAMENTS
申请人:UNIV JOHNS HOPKINS
公开号:WO2015164482A1
公开(公告)日:2015-10-29
The present invention provides novel indoleamide compounds for treating tuberculosis, including drug-resistant M-tuberculosis, compositions comprising the indoleamides and methods of using the indoleamides in conjunction with other biologically active agents for the treatment of tuberculosis in a subject in need thereof.
Provided herein are indole-2-carboxamide compounds useful for the treatment of non-tuberculosis bacterial infections. Exemplary compounds provided herein are useful for the treatment of non-tuberculosis mycobacterial infections. Methods for preparing the indole-2-carboxamide compounds are also provided.
Sustainable multicomponent indole synthesis with broad scope
作者:Xiaofang Lei、Giasemi K. Angeli、Constantinos G. Neochoritis、Alexander Dömling
DOI:10.1039/d2gc02060b
日期:——
innovative 2-step reaction from inexpensive and broadly available anilines, glyoxal dimethyl acetal, formic acid and isocyanides involving an Ugi multicomponent reaction followed by an acid inducedcyclization. As opposed to many other indoles syntheses, our method delivers under mild and benign conditions using ethanol as solvent and no metal catalyst. The scope of the reactions was scouted and 20
最优选的杂环吲哚核心是通过创新的两步反应从廉价且广泛可用的苯胺、乙二醛二甲基缩醛、甲酸和异氰化物从头组装而成,其中涉及 Ugi 多组分反应,然后是酸诱导的环化。与许多其他吲哚合成相反,我们的方法在温和和良性条件下使用乙醇作为溶剂且不使用金属催化剂。研究了反应的范围并描述了 20 种衍生物。
Chemical Probes to Identify Anti-Mycobacterial MmpL3 Inhibitors
申请人:Creighton University
公开号:US20200331897A1
公开(公告)日:2020-10-22
The present application provides detectable compounds useful for identifying compounds that bind (e.g., inhibit) MmpL3. Methods of identifying compounds that bind and/or inhibit MmpL3 are also provided.