Gram-scale synthesis of alstoscholarinoid B via a bio-inspired strategy

Alstoscholarinoid A is a novel rearranged triterpene with an unprecedented 6/6/5/6/6/6 framework and an additional unique C28 → C11-olide F-ring, and displays antihyperuricemic bioactivity. Herein, we report a bio-inspired synthesis of alstoscholarinoid B in a stepwise manner, which is amenable to g...

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Veröffentlicht in:Organic & biomolecular chemistry 2023-12, Vol.21 (47), p.9346-9355
Hauptverfasser: He, Long, Zhang, Wenting, Zhang, Xiaocheng, Wu, Xiaohui, Han, Yimeng, Yan, Jiahang, Xie, Weiqing
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Sprache:eng
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Zusammenfassung:Alstoscholarinoid A is a novel rearranged triterpene with an unprecedented 6/6/5/6/6/6 framework and an additional unique C28 → C11-olide F-ring, and displays antihyperuricemic bioactivity. Herein, we report a bio-inspired synthesis of alstoscholarinoid B in a stepwise manner, which is amenable to gram-scale synthesis. The synthesis involved the Chugaev elimination as a key step to realize the migration of the Δ11,12-double bond of oleanolic acid, and also featured a sequential LiHMDS-mediated intramolecular aldol condensation/lactonization to establish the polycyclic ring system. Additionally, a tandem deprotection/aldol condensation/lactonization process under the influence of LiI/2,4,6-collidine for forging the polycyclic scaffold was also serendipitously discovered. Mechanistic studies indicated that lithium carboxylate might function as an inner base for the chemoselective α-deprotonation of the C12-aldehyde.
ISSN:1477-0520
1477-0539
DOI:10.1039/d3ob01625k