1. Academic Validation
  2. A versatile synthesis of "tafuramycin A": a potent anticancer and parasite attenuating agent

A versatile synthesis of "tafuramycin A": a potent anticancer and parasite attenuating agent

  • Org Biomol Chem. 2014 Jun 28;12(24):4260-4. doi: 10.1039/c4ob00842a.
Ibrahim M El-Deeb 1 Faith J Rose Peter C Healy Mark von Itzstein
Affiliations

Affiliation

  • 1 Institute for Glycomics, Griffith University, Gold Coast Campus, Queensland, 4222, Australia. i.el-deeb@griffith.edu.au m.vonitzstein@griffith.edu.au.
Abstract

An improved and versatile synthesis of tafuramycin A, a potent Anticancer and parasite-attenuating agent, is reported. The three major improvements that optimized yield, simplified purification and allowed the synthesis of more versatile duocarmycin analogues are: a first-time reported regioselective bromination using DMAP as catalyst; the control of the aryl radical alkene cyclization step to prevent the dechlorination side reaction; and the design of a new protection/deprotection method to avoid furan double bond reduction during the classical O-benzyl deprotection in the final step. This alternative protection/deprotection strategy provides ready access to duocarmycin seco-analogues that carry labile functionalities under reducing reaction conditions. Tafuramycin A (3) was prepared in either 8 steps from intermediate 6 or 7 steps from intermediate 17 in 52% or 37% yield respectively. Our strategy provides a significant improvement on the original procedure (11% overall yield) and greater versatility for analogue development.

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