Synthesis of Conformationally Constrained Analogues of Linezolid:  Structure−Activity Relationship (SAR) Studies on Selected Novel Tricyclic Oxazolidinones

Journal of Medicinal Chemistry
2002.0

Abstract

In an effort to discover potent antibacterials based on the entropically favored "bioactive conformation" approach, we have designed and synthesized a series of novel tricyclic molecules mimicking the conformationally constrained structure of the oxazolidinone antibacterial, Linezolid 1. The structure 3 obtained by this approach was synthesized and found to be moderately active against a panel of Gram-positive organisms tested. Further introduction of a fluorine atom in the aromatic ring of compound 3 as in Linezolid resulted in some excellent compounds possessing potent antibacterial activity. The thus obtained lead molecule 16 was further fine-tuned by structure-activity relationship studies on the amide functionality leading to a number of novel tricyclic oxazolidinone derivatives. Some particularly interesting compounds include the thioamides 36 and 37, thiocarbamate 41, and thiourea 45. The in vitro activity results of amide homologues of 16 (compounds 25-30) revealed that compounds up to four carbon atoms on the amide nitrogen retain the activity. In general, thioamides and thiocarbamates are more potent when compared to the corresponding amides and carbamates.

Knowledge Graph

Similar Paper

Synthesis of Conformationally Constrained Analogues of Linezolid:  Structure−Activity Relationship (SAR) Studies on Selected Novel Tricyclic Oxazolidinones
Journal of Medicinal Chemistry 2002.0
Synthesis of novel tricyclic oxazolidinones by a tandem SN2 and SNAr reaction: SAR studies on conformationally constrained analogues of Linezolid
Bioorganic & Medicinal Chemistry Letters 2006.0
The synthesis and antibacterial activity of 1,3,4-Thiadiazole phenyl oxazolidinone analogues
Bioorganic & Medicinal Chemistry Letters 2003.0
Conformational Constraint in Oxazolidinone Antibacterials. Synthesis and Structure−Activity Studies of (Azabicyclo[3.1.0]hexylphenyl)oxazolidinones
Journal of Medicinal Chemistry 2005.0
Synthesis and in vitro/in vivo antibacterial activity of oxazolidinones having thiocarbamate at C-5 on the A-ring and an amide- or urea-substituted [1,2,5]triazepane or [1,2,5]oxadiazepane as the C-ring
European Journal of Medicinal Chemistry 2013.0
Synthesis and antibacterial activity of linezolid analogues
Bioorganic & Medicinal Chemistry Letters 2002.0
Influence of ethylene-Oxy spacer group on the activity of linezolid: Synthesis of potent antibacterials possessing a thiocarbonyl group
Bioorganic & Medicinal Chemistry Letters 2003.0
Synthesis and biological evaluation of novel benzoxazinyl-oxazolidinones as potential antibacterial agents
Bioorganic & Medicinal Chemistry Letters 2013.0
New linezolid-like 1,2,4-oxadiazoles active against Gram-positive multiresistant pathogens
European Journal of Medicinal Chemistry 2013.0
Synthesis and structure–activity relationship studies of novel [6,6,5] tricyclic oxazolidinone derivatives as potential antibacterial agents
Bioorganic & Medicinal Chemistry Letters 2015.0