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February 5, 2026Angewandte Chemie International Edition2 citations

Total Synthesis of Limonoids Enabled by Sterically Assisted Boron Chain‐Walking

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ABArsheed Ahmad BhatMAMd. Mustaque AnsariPSPrabhakar Singh

Key Points

  • The research aims to develop a novel synthetic strategy for accessing limonoids, which are complex natural products with significant biological activity.
  • Utilized a Hajos–Parrish ketone derivative to begin the synthesis
  • Employed sterically assisted hydroboration/boron chain-walking/oxidation protocol
  • Achieved late-stage remote C–H hydroxylation in polycyclic scaffolds
  • Successfully synthesized (+)‐azadiradione and (−)‐7‐desacetyl‐7‐benzoylazadiradione
  • Demonstrated high regio- and stereoselectivity in the hydroxylation process
  • Established a unified entry to multiple limonoid families for further study

Abstract

ABSTRACT Limonoids are architecturally complex tetranortriterpenoids with diverse biological activities, yet their synthetic inaccessibility has limited detailed investigations. Here, we report an enantioselective strategy that enables efficient access to intact limonoids. Our approach begins with a readily available Hajos–Parrish ketone derivative and rapidly assembles the tetracyclic core of the target scaffold. Central to this route is a novel sterically assisted hydroboration/boron chain‐walking/oxidation protocol, which achieves a challenging late‐stage remote C–H hydroxylation in a highly regio‐ and stereoselective manner within sterically congested polycyclic scaffolds. This strategy has enabled the total syntheses of (+)‐azadiradione and (−)‐7‐desacetyl‐7‐benzoylazadiradione. These studies provide a unified entry to multiple limonoid families and establish a broadly applicable solution for site‐selective late‐stage functionalization in complex natural product frameworks.

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Cite This Study

Bhat et al. (2026) studied this question.

synapsesocial.com/papers/69843405f1d9ada3c1fb1bd0https://doi.org/10.1002/anie.202525970
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