Iridium‐Catalyzed Reductive (3+2) Annulation of Lactams Enabling the Rapid Total Synthesis of (±)‐Eburnamonine

Author:

Sugiyama Yasukazu1,Yamada Kento1,Kaneko Daiki1,Kusagawa Yuya1,Okamura Toshitaka1ORCID,Sato Takaaki1ORCID

Affiliation:

1. Department of Applied Chemistry Faculty of Science and Technology Keio University 3-14-1, Hiyoshi, Kohoku-ku Yokohama 223-8522 Japan

Abstract

AbstractA reductive (3+2) annulation of lactams through iridium‐catalyzed hydrosilylation and photoredox coupling with α‐bromoacetic acid was developed. The iridium‐catalyzed hydrosilylation of the lactam carbonyl group and subsequent elimination provide a transient cyclic enamine, which undergoes iridium‐catalyzed photoredox coupling with α‐bromoacetic acid in a one‐pot process. The developed conditions show high functional‐group tolerance and provide cyclic N,O‐acetals containing a quaternary carbon center. The resulting N,O‐acetals undergo a variety of acid‐mediated nucleophilic addition reactions via iminium ions to give substituted cyclic amines. The developed sequence including reductive (3+2) annulation and acid‐mediated nucleophilic addition was successfully applied to the four‐step total synthesis of (±)‐eburnamonine.

Publisher

Wiley

Subject

General Chemistry,Catalysis

Reference152 articles.

1. For isolation and biology of eburnamonine (1) see:

2. The Alkaloids of Hunteria eburnea Pichon. III.1 The Tertiary Bases

3. Syntheses and Cardiovascular Activity of Stereoisomers and Derivatives of Eburnane Alkaloids

4. Eburnamine derivatives and the brain

5. For isolation and biology of (+)-19(S)-hydroxy-Δ14-vincamone (2) see:

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