Therapeutic effect of demethylated hydroxylated phillygenin derivative on Helicobacter pylori infection
Modifying and transforming natural antibacterial products is a novel idea for developing new efficacious compounds. Phillygenin has an inhibitory effect on . The aim of the present study was to prepare a phillygenin derivative (PHI-Der) through demethylation and hydroxylation. The minimum inhibitory...
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Veröffentlicht in: | Frontiers in microbiology 2023-05, Vol.14, p.1071603-1071603 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Modifying and transforming natural antibacterial products is a novel idea for developing new efficacious compounds. Phillygenin has an inhibitory effect on
. The aim of the present study was to prepare a phillygenin derivative (PHI-Der) through demethylation and hydroxylation. The minimum inhibitory concentration of 18 strains of
from different sources was 8-32 μg/mL
, and the activity increased 2-8 times than that of phillygenin. PHI-Der could significantly inhibit the colonization of
, reduce the inflammatory response, and promote the repair of inflammatory damage. Further, we used SwissTargetPrediction to predict that its main targets are
,
, and
, and find that it can inhibit bacterial biofilm formation and reduce bacterial infection of cells. It can enhance the intracellular oxidative capacity of
to inhibit
growth. Further, it could prevent the oxidation of
-infected cells and reduce the inflammatory response, which plays a role in protection. In conclusion, compared to phillygenin, PHI-Der had better antibacterial activity and was more effective in treating
infection. It has characteristics of high safety, specificity, resistance to drug resistance and better antibacterial activity than phillygenin, it's a good antioxidant for host cells. |
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ISSN: | 1664-302X 1664-302X |
DOI: | 10.3389/fmicb.2023.1071603 |