We report the multigram scale synthesis
of heterodimeric β-truxinic
imides piperarborenines C-E using a catechol-tethered diastereoselective
intramolecular [2 + 2] photocycloaddition. Key innovations lie in
the use of catechol as a practical auxiliary for the synthesis of
homo- and heterodimeric β-truxinates and the use of a UV-LED
flow photoreactor in the [2 + 2] step. This approach is highly scalable,
requiring a single column purification, no photocatalysts, and no
cryogenic conditions.
We report the development of a multigram scale total synthesis of heterodimeric β-truxinic imides piperarborenines C-E using a catechol-mediated diastereoselective intramolecular [2+2] photocycloaddition. Key innovations lie in the use of (1) catechol as a highly selective auxiliary for the robust and scalable synthesis of homo- and heterodimeric β-truxinates, (2) UV LEDs for direct excitation in the [2+2] cycloaddition step, and (3) a bis pentafluorophenyl ester and LDA for the challenging installation of the syn dihydropyridinone imides. This approach is exceptionally scalable – requiring minimal chromatography, no photocatalysts, and no cryogenic conditions - and will enable thorough evaluation of the biological properties and anticancer profiles of piperaborenines C-E and derivatives thereof.
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