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Synthesis of pyrrolidine-based hamamelitannin analogues as quorum sensing inhibitors in Staphylococcus aureus.


ABSTRACT: Interfering with bacterial cell-to-cell communication is a promising strategy to combat antimicrobial resistance. The natural product hamamelitannin and several of its analogues have been identified as quorum sensing inhibitors. In this paper the synthesis of pyrrolidine-based analogues of a more lead-like hamamelitannin analogue is reported. A convergent synthetic route based on a key ring-closing metathesis reaction was developed and delivered the pyrrolidine analogue in 17 steps in high yield. Chemoselective derivatization of the pyrrolidine nitrogen atom resulted in 6 more compounds. The synthesized compounds were evaluated in a biofilm model, but were all inactive.

SUBMITTER: Bouton J 

PROVIDER: S-EPMC6244240 | biostudies-literature | 2018

REPOSITORIES: biostudies-literature

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Synthesis of pyrrolidine-based hamamelitannin analogues as quorum sensing inhibitors in <i>Staphylococcus aureus</i>.

Bouton Jakob J   Van Hecke Kristof K   Rasooly Reuven R   Van Calenbergh Serge S  

Beilstein journal of organic chemistry 20181112


Interfering with bacterial cell-to-cell communication is a promising strategy to combat antimicrobial resistance. The natural product hamamelitannin and several of its analogues have been identified as quorum sensing inhibitors. In this paper the synthesis of pyrrolidine-based analogues of a more lead-like hamamelitannin analogue is reported. A convergent synthetic route based on a key ring-closing metathesis reaction was developed and delivered the pyrrolidine analogue in 17 steps in high yield  ...[more]

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