4.8 Article

A Reverse Approach to the Total Synthesis of Halichondrin B

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 143, Issue 24, Pages 9267-9276

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jacs.1c05270

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Funding

  1. AbbVie Stemcentrx
  2. Cancer Prevention & Research Institute of Texas (CPRIT)
  3. Welch Foundation [C-1819]

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A new strategy for the total synthesis of Halichondrin B was described in this study, presenting a novel approach that allows for improved syntheses of complex compounds. The method involves the reversal of sequential construction and the coupling of defined fragments to achieve a convergent pathway.
A new strategy is described for the total synthesis of halichondrin B featuring reversal of the sequential construction of a number of its cyclic ethers from the classical approach by instead forming C-O bonds first followed by C-C bond formation. Employing the Nicholas reaction to generate linear ethers as precursors for the total synthesis of halichondrin B and other members of the halichondrin and eribulin families of compounds, this novel approach provides new opportunities for the development of improved syntheses of these complex and valuable compounds. In this Article, we report the syntheses of defined fragments I, MN, EFG, and A. Fragments I and MN were then coupled and elaborated to advanced intermediate IJKLMN, which was joined with fragment EFG to afford, after appropriate elaboration and macrolactonization, the more advanced polycyclic intermediate EFGHIJKLMN. Elaboration of the latter and coupling with fragment A followed by further functionalization completed the total synthesis of halichondrin B through a short and convergent pathway.

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