Nejvíce citovaný článek - PubMed ID 16579722
Resveratrol and its glycon piceid are stable polyphenols
Microorganisms that cause chronic infections exist predominantly as surface-attached stable communities known as biofilms. Microbial cells in biofilms are highly resistant to conventional antibiotics and other forms of antimicrobial treatment; therefore, modern medicine tries to develop new drugs that exhibit anti-biofilm activity. We investigated the influence of a plant polyphenolic compound resveratrol (representative of the stilbene family) on the opportunistic pathogen Trichosporon cutaneum. Besides the influence on the planktonic cells of T. cutaneum, the ability to inhibit biofilm formation and to eradicate mature biofilm was studied. We have tested resveratrol as pure compound, as well as resveratrol in complex plant extract-the commercially available dietary supplement Regrapex-R-forte, which contains the extract of Vitis vinifera grape and extract of Polygonum cuspidatum root. Regrapex-R-forte is rich in stilbenes and other biologically active substances. Light microscopy imaging, confocal microscopy, and crystal violet staining were used to quantify and visualize the biofilm. The metabolic activity of biofilm-forming cells was studied by the tetrazolium salt assay. Amphotericin B had higher activity against planktonic cells; however, resveratrol and Regrapex-R-forte showed anti-biofilm effects, both in inhibition of biofilm formation and in the eradication of mature biofilm. The minimum biofilm eradicating concentration (MBEC80) for Regrapex-R-forte was found to be 2222 mg/L (in which resveratrol concentration is 200 mg/L). These methods demonstrated that Regrapex-R-forte can be employed as an anti-biofilm agent, as it has similar effect as amphotericin B (MBEC80 = 700 mg/L), which is routinely used in clinical practice.
- Klíčová slova
- Anti-biofilm activity, Plant extract, Stilbene, Trichosporon,
- MeSH
- amfotericin B farmakologie MeSH
- antifungální látky farmakologie MeSH
- biofilmy účinky léků růst a vývoj MeSH
- mikrobiální testy citlivosti MeSH
- resveratrol farmakologie MeSH
- Reynoutria japonica chemie MeSH
- rostlinné extrakty farmakologie MeSH
- Trichosporon účinky léků růst a vývoj metabolismus MeSH
- Vitis chemie MeSH
- Publikační typ
- časopisecké články MeSH
- Názvy látek
- amfotericin B MeSH
- antifungální látky MeSH
- resveratrol MeSH
- rostlinné extrakty MeSH