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Generation of potent antibacterial compounds through enzymatic and chemical modifications of the trans-δ-viniferin scaffold.


ABSTRACT: Stilbene dimers are well-known for their diverse biological activities. In particular, previous studies have demonstrated the high antibacterial potential of a series of trans-δ-viniferin-related compounds against gram-positive bacteria such as Staphylococcus aureus. The trans-δ-viniferin scaffold has multiple chemical functions and can therefore be modified in various ways to generate derivatives. Here we report the synthesis of 40 derivatives obtained by light isomerization, O-methylation, halogenation and dimerization of other stilbene monomers. The antibacterial activities of all generated trans-δ-viniferin derivatives were evaluated against S. aureus and information on their structure-activity relationships (SAR) was obtained using a linear regression model. Our results show how several parameters, such as the O-methylation pattern and the presence of halogen atoms at specific positions, can determine the antibacterial activity. Taken together, these results can serve as a starting point for further SAR investigations.

SUBMITTER: Huber R 

PROVIDER: S-EPMC10520035 | biostudies-literature | 2023 Sep

REPOSITORIES: biostudies-literature

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Generation of potent antibacterial compounds through enzymatic and chemical modifications of the trans-δ-viniferin scaffold.

Huber Robin R   Marcourt Laurence L   Héritier Margaux M   Luscher Alexandre A   Guebey Laurie L   Schnee Sylvain S   Michellod Emilie E   Guerrier Stéphane S   Wolfender Jean-Luc JL   Scapozza Leonardo L   Köhler Thilo T   Gindro Katia K   Queiroz Emerson Ferreira EF  

Scientific reports 20230925 1


Stilbene dimers are well-known for their diverse biological activities. In particular, previous studies have demonstrated the high antibacterial potential of a series of trans-δ-viniferin-related compounds against gram-positive bacteria such as Staphylococcus aureus. The trans-δ-viniferin scaffold has multiple chemical functions and can therefore be modified in various ways to generate derivatives. Here we report the synthesis of 40 derivatives obtained by light isomerization, O-methylation, hal  ...[more]

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