Issue 12, 2021

Investigating 3,3-diaryloxetanes as potential bioisosteres through matched molecular pair analysis

Abstract

Oxetanes have received increasing interest in medicinal chemistry as attractive polar and low molecular weight motifs. The application of oxetanes as replacements for methylene, methyl, gem-dimethyl and carbonyl groups has been demonstrated to often improve chemical properties of target molecules for drug discovery purposes. The investigation of the properties of 3,3-diaryloxetanes, particularly of interest as a benzophenone replacement, remains largely unexplored. With recent synthetic advances in accessing this motif we studied the effects of 3,3-diaryloxetanes on the physicochemical properties of ‘drug-like’ molecules. Here, we describe our efforts in the design and synthesis of a range of drug-like compounds for matched molecular pair analysis to investigate the viability of the 3,3-diaryloxetane motif as a replacement group in drug discovery. We conclude that the properties of the diaryloxetanes and ketones are similar, and generally superior to related alkyl linkers, and that diaryloxetanes provide a potentially useful new design element.

Graphical abstract: Investigating 3,3-diaryloxetanes as potential bioisosteres through matched molecular pair analysis

Supplementary files

Article information

Article type
Research Article
Submitted
22 Jul 2021
Accepted
05 Oct 2021
First published
06 Oct 2021
This article is Open Access
Creative Commons BY license

RSC Med. Chem., 2021,12, 2045-2052

Investigating 3,3-diaryloxetanes as potential bioisosteres through matched molecular pair analysis

M. A. J. Dubois, R. A. Croft, Y. Ding, C. Choi, D. R. Owen, J. A. Bull and J. J. Mousseau, RSC Med. Chem., 2021, 12, 2045 DOI: 10.1039/D1MD00248A

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