Isolation, structure, and synthesis of combretastatin A-2, A-3, and B-2

Canadian Journal of Chemistry
1987.0

Abstract

<jats:p> Further investigation of the South African tree Combretumcaffrum (Combretaceae) for murine P388 lymphocytic leukemia (PS) cell-growth inhibitory substances has led to discovery of three new active constituents designated combretastatins A-2 (5a, PS ED<jats:sub>50</jats:sub> 0.027 μg/mL), A-3 (5b, PS ED<jats:sub>50</jats:sub> 0.026 μg/mL), and B-2 (3b, PS ED<jats:sub>50</jats:sub> 0.32 μg/mL). Both combretastatins A-2 and A-3 were found to markedly inhibit tubulin polymerization. The structure of each combretastatin was firmly established by a combination of high resolution (400 MHz) <jats:sup>1</jats:sup>H and <jats:sup>13</jats:sup>C nuclear magnetic resonance and mass spectral analyses followed by total syntheses. The conversion of methyl gallate (7b) to combretastatin A-2 via intermediates 7c → 7d → 7e → 7a and 6a → 5a illustrates the practical synthetic route utilized for obtaining these substances. The Wittig reaction employed as the penultimate step in obtaining combretastatins A-3, afforded predominantly the natural Z isomer.

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