Selective synthesis of 3-o-palmitoyl-silybin, a new-to-nature flavonolignan with increased protective action against oxidative damages in lipophilic media

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Abstract

A selective acylation protocol using cerium chloride (CeCl3) as catalyst was applied to functionalize silybinin (1), a natural antioxidant flavonolignan from milk thistle fruit, in order to increase its solubility in lipophilic media while retaining its strong antioxidant activity. The selective esterification of 1 at the position 3-OH with a palmitate acyl chain leading to the formation of the 3-O-palmitoyl-silybin (2) was confirmed by both mass spectroscopy (MS) and nuclear magnetic resonance (NMR) analyses. The antioxidant activity of 1 was at least retained and even increased with the CUPRAC assay designed to estimate the antioxidant activity of both hydrophilic and lipophilic compounds. Finally, the 3-O-palmitoylation of 1, resulting in the formation of 2, also increased its anti-lipoperoxidant activity (i.e., inhibition of conjugated diene production) in two different lipophilic media (bulk oil and o/w emulsion) subjected to accelerated storage test.

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Drouet, S., Doussot, J., Garros, L., Mathiron, D., Bassard, S., Favre-Réguillon, A., … Hano, C. (2018). Selective synthesis of 3-o-palmitoyl-silybin, a new-to-nature flavonolignan with increased protective action against oxidative damages in lipophilic media. Molecules, 23(10). https://doi.org/10.3390/molecules23102594

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