Concise Total Syntheses of (−)-Ohioensin A, Putative (+)-Ohioensin C, (+)-Myristinins A and B/C, and (+)-Caesalpinflavan A

Abstract The ohioensins represent a distinct class of polycyclic benzonaphthoxanthenone natural products that share structural similarities with flavonoids. Herein, we disclose a unified synthetic approach that culminates in the first concise enantioselective total syntheses of (−)-ohioensin A and putative (+)-ohioensin C, as well as the flavonoids (+)-myristinins A and B/C and (+)-caesalpinflavan A. The synthetic strategy hinges on the development of novel methodologies, including a chiral biphenol-catalyzed enantioselective conjugate addition of alkenyl and aryl boronic acids to 2-hydroxynitrostyrenes, a stereodivergent cyclization to procure both cis- or trans-2,4-disubstituted benzodihydropyrans, and an intramolecular deaminative aromatic homolytic substitution.

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Publication Details

Journal
Journal of the American Chemical Society
Published
2026-09-24
DOI
https://doi.org/10.1021/jacs.6c11735
Primary Topic
Traditional and Medicinal Uses of Annonaceae
Type
article
Field-Weighted Citation Impact
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article

Concise Total Syntheses of (−)-Ohioensin A, Putative (+)-Ohioensin C, (+)-Myristinins A and B/C, and (+)-Caesalpinflavan A

Shao‐Hua Wang, Xiao‐Ming Zhang, A-Long Gou, Ye Zhang et al.
Journal of the American Chemical Society
Traditional and Medicinal Uses of Annonaceae
article

Concise Total Syntheses of (−)-Ohioensin A, Putative (+)-Ohioensin C, (+)-Myristinins A and B/C, and (+)-Caesalpinflavan A

Shao‐Hua Wang, Xiao‐Ming Zhang, A-Long Gou, Ye Zhang, Dao‐Yong Zhu
article en

Abstract

Abstract The ohioensins represent a distinct class of polycyclic benzonaphthoxanthenone natural products that share structural similarities with flavonoids. Herein, we disclose a unified synthetic approach that culminates in the first concise enantioselective total syntheses of (−)-ohioensin A and putative (+)-ohioensin C, as well as the flavonoids (+)-myristinins A and B/C and (+)-caesalpinflavan A. The synthetic strategy hinges on the development of novel methodologies, including a chiral biphenol-catalyzed enantioselective conjugate addition of alkenyl and aryl boronic acids to 2-hydroxynitrostyrenes, a stereodivergent cyclization to procure both cis- or trans-2,4-disubstituted benzodihydropyrans, and an intramolecular deaminative aromatic homolytic substitution.

Journal of the American Chemical Society
Lanzhou University of Technology (CN), Lanzhou University (CN)
Openalex Percentile: Top 16%
Traditional and Medicinal Uses of Annonaceae
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