Indolyl Azaspiroketal Mannich Bases Are Potent Antimycobacterial Agents with Selective Membrane Permeabilizing Effects and in Vivo Activity

Journal of Medicinal Chemistry
2018.0

Abstract

The inclusion of an azaspiroketal Mannich base in the membrane targeting antitubercular 6-methoxy-1- n-octyl-1 H-indole scaffold resulted in analogs with improved selectivity and submicromolar activity against Mycobacterium tuberculosis H37Rv. The potency enhancing properties of the spiro-fused ring motif was affirmed by SAR and validated in a mouse model of tuberculosis. As expected for membrane inserting agents, the indolyl azaspiroketal Mannich bases perturbed phospholipid vesicles, permeabilized bacterial cells, and induced the mycobacterial cell envelope stress reporter promoter p iniBAC. Surprisingly, their membrane disruptive effects did not appear to be associated with bacterial membrane depolarization. This profile was not uniquely associated with azaspiroketal Mannich bases but was characteristic of indolyl Mannich bases as a class. Whereas resistant mycobacteria could not be isolated for a less potent indolyl Mannich base, the more potent azaspiroketal analog displayed low spontaneous resistance mutation frequency of 10-8/CFU. This may indicate involvement of an additional envelope-related target in its mechanism of action.

Knowledge Graph

Similar Paper

Indolyl Azaspiroketal Mannich Bases Are Potent Antimycobacterial Agents with Selective Membrane Permeabilizing Effects and in Vivo Activity
Journal of Medicinal Chemistry 2018.0
Amphiphilic Indole Derivatives as Antimycobacterial Agents: Structure–Activity Relationships and Membrane Targeting Properties
Journal of Medicinal Chemistry 2017.0
Indolylalkyltriphenylphosphonium Analogues Are Membrane-Depolarizing Mycobactericidal Agents
ACS Medicinal Chemistry Letters 2017.0
Structural Rigidification of N-Aryl-pyrroles into Indoles Active against Intracellular and Drug-Resistant Mycobacteria
ACS Medicinal Chemistry Letters 2022.0
2-Phenylindole and Arylsulphonamide: Novel Scaffolds Bactericidal against Mycobacterium tuberculosis
ACS Medicinal Chemistry Letters 2014.0
Oxadiazole mannich bases: Synthesis and antimycobacterial activity
Bioorganic & Medicinal Chemistry Letters 2007.0
Indole-2-carboxamide-based MmpL3 Inhibitors Show Exceptional Antitubercular Activity in an Animal Model of Tuberculosis Infection
Journal of Medicinal Chemistry 2016.0
Synthesis, molecular docking, antimycobacterial and antimicrobial evaluation of new pyrrolo[3,2- c ]pyridine Mannich bases
European Journal of Medicinal Chemistry 2017.0
A highly atom economic, chemo-, regio- and stereoselective synthesis and evaluation of spiro-pyrrolothiazoles as antitubercular agents
Bioorganic & Medicinal Chemistry Letters 2010.0
Targeting mycobacterial membranes and membrane proteins: Progress and limitations
Bioorganic & Medicinal Chemistry 2023.0