Strain‐Release‐Driven Modular Synthesis of Oxetane‐Based Amide Bioisosteres: Concise, Robust and Scalable Approach

Author:

Spránitz Péter1,Sőregi Petra12,Hegedüs Kristóf12ORCID,Igriczi Barbara3ORCID,Szakács Gergely34ORCID,Jemnitz Katalin1,Szabó Pál5ORCID,Galushchak Yarema6,Mykhailiuk Pavel K.67ORCID,Soós Tibor1ORCID

Affiliation:

1. Institute of Organic Chemistry Research Centre for Natural Sciences Magyar tudósok körútja 2 H-1117 Budapest Hungary

2. Hevesy György Ph.D. School of Chemistry Eötvös Loránd University Pázmány Péter sétány 1/A H-1117 Budapest Hungary

3. Institute of Molecular Life Sciences Research Centre for Natural Sciences Magyar tudósok körútja 2 H-1117 Budapest Hungary

4. Center for Cancer Research Medical University of Vienna Borschkegasse 8a 1090 Vienna Austria

5. Centre for Structural Science Research Centre for Natural Sciences Magyar tudósok körútja 2 H-1117 Budapest Hungary

6. Enamine Ltd 78 Winston Churchill st. 78 02094 Kyiv Ukraine

7. Chemistry Department Taras Shevchenko National University of Kyiv 64 Volodymyrska 01601 Kyiv Ukraine

Abstract

AbstractAmide bioisoterism is a widely used strategy in drug development to fine‐tune physicochemical, pharmacokinetic, and metabolic properties, eliminate toxicity and gain intellectual property rights in uncharted chemical space. Of these, oxetane‐amines offer particularly exciting possibilities as bioisosteres, although they are less frequently investigated than warranted due to the lack of simple and widely applicable synthetic methods. Herein, we report a two‐step, practical, modular, robust, and scalable method for the construction of oxetane‐containing amide bioisosteres that relies on the readily available oxetan‐3‐one. This operationally simple procedure exploits the enhanced reactivity of the keto group of the commercially available oxetan‐3‐one to form amine‐benzotriazole intermediates, which springloaded adducts are then reacted with various aliphatic and aromatic organometallic reagents under mild conditions to afford various amino‐oxetanes in good to high yields. The simplicity and broad applicability of the method greatly facilitates the synthesis of derivatives that were previously difficult or impossible to produce. The usefulness of this method in the field medicinal chemistry was also demonstrated by eliminating the well‐known metabolic problem of ketoconazole.

Publisher

Wiley

Reference52 articles.

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