Abstract:Currently, there is an increasing number of cases of fungal infections caused by opportunistic strains of the yeast Rhodotorula mucilaginosa, mainly in immunocompromised patients during hospitalization. The excessive use of antibiotics and azole compounds increases the risk of resistance to microorganisms. A new alternative to these drugs may be synthetic phthalide lactones with a structure identical to or similar to the natural ones found in celery plants, which show low toxicity and relatively high fungistat… Show more
A new and simple method to prepare 3-cinnamoyl-3-hydroxyphthalide derivatives from 2-hydroxy-3-methyl-1,4-naphthoquinone and substituted benzaldehydes was unexpectedly uncovered. The reaction was conveniently performed in DMSO at 100 ⁰C with K3PO4 as a base and AlCl3 as a catalyst. We proposed that the products occurred via a cascade process involving nucleophilic addition followed by demethylation and rearrangement. The products were typically obtained in moderate to good yields. The highest yield (95%) was obtained when the reaction of 2-bromobenzaldehyde was performed for 24 hours. X-ray crystallography of the product derived from 2-fluorobenzaldehyde unequivocally confirmed the structures of the hydroxyphthalide derivatives.
A new and simple method to prepare 3-cinnamoyl-3-hydroxyphthalide derivatives from 2-hydroxy-3-methyl-1,4-naphthoquinone and substituted benzaldehydes was unexpectedly uncovered. The reaction was conveniently performed in DMSO at 100 ⁰C with K3PO4 as a base and AlCl3 as a catalyst. We proposed that the products occurred via a cascade process involving nucleophilic addition followed by demethylation and rearrangement. The products were typically obtained in moderate to good yields. The highest yield (95%) was obtained when the reaction of 2-bromobenzaldehyde was performed for 24 hours. X-ray crystallography of the product derived from 2-fluorobenzaldehyde unequivocally confirmed the structures of the hydroxyphthalide derivatives.
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