The successful sustainable cultivation of the well-known medicinal plant sundew on rewetted peatlands not only leads to the preservation of natural populations, but also provides a basis for the sustainable pharmaceutical use of the plant. The bioactive compounds of sundew, flavonoids and naphthoquinones, show biofilm-inhibiting properties against multidrug-resistant, ESBL-producing E. coli strains and open up new therapeutic possibilities. This study investigates the molecular mechanisms of these compounds in biofilm inhibition through proteomic analyses. Specific fractions of flavonoids and naphthoquinones, as well as individual substances like 7-methyljuglone and 2â³-O-galloylhyperoside, are analyzed. Results show that naphthoquinones appear to act via central regulatory proteins such as OmpR and alter the stress response while flavonoids likely affect biofilm formation by creating an iron-poor environment through iron complexation and additionally influence polyamine balance, reducing intracellular spermidine levels. Further investigations including assays for iron complexation and analysis of polyamines confirmed the proteomic data. Safety evaluations through cytotoxicity tests in 3D cell cultures and the Galleria mellonella in vivo model confirm the safety of the extracts used. These findings highlight sundew as a promising candidate for new phytopharmaceuticals.
Drosera rotundifolia L. as E. coli biofilm inhibitor: Insights into the mechanism of action using proteomics/metabolomics and toxicity studies.
圆叶茅膏菜作为大肠杆菌生物膜抑制剂:利用蛋白质组学/代谢组学和毒性研究深入了解其作用机制
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作者:Gerschler Sandy, Maaà Sandra, Gerth Philip, Schulig Lukas, Wildgrube Toni, Rockstroh Jan, Wurster Martina, Methling Karen, Becher Dörte, Lalk Michael, Schulze Christian, Guenther Sebastian, Schultze Nadin
| 期刊: | Biofilm | 影响因子: | 4.900 |
| 时间: | 2025 | 起止号: | 2025 Feb 28; 9:100268 |
| doi: | 10.1016/j.bioflm.2025.100268 | 研究方向: | 代谢 |
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