Molecular mechanisms of silybin and 2,3-dehydrosilybin antiradical activity--role of individual hydroxyl groups
Jazyk angličtina Země Spojené státy americké Médium print-electronic
Typ dokumentu časopisecké články, práce podpořená grantem
PubMed
19138735
DOI
10.1016/j.freeradbiomed.2008.11.016
PII: S0891-5849(08)00726-0
Knihovny.cz E-zdroje
- MeSH
- dimerizace MeSH
- hydroxylový radikál chemie MeSH
- molekulární modely MeSH
- ostropestřec mariánský * MeSH
- oxidace-redukce MeSH
- oxidační stres MeSH
- peroxidace lipidů MeSH
- scavengery volných radikálů chemie MeSH
- silibinin MeSH
- silymarin chemie MeSH
- techniky in vitro MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Názvy látek
- hydroxylový radikál MeSH
- scavengery volných radikálů MeSH
- silibinin MeSH
- silymarin MeSH
The flavonolignans silybin (1) and 2,3-dehydrosilybin (2) are important natural compounds with multiple biological activities operating at various cell levels. Many of these effects are connected with their radical-scavenging activities. The molecular mechanisms of the antioxidant activity of these compounds and even the functional groups responsible for this activity are not yet well known. Their mechanism can be inferred from the structures of the dimeric products obtained from radical-mediated reactions of selectively methylated derivatives of 1 and 2. The radical oxidation of 1 methylated at 7-OH and 2 methylated at both 3-OH and 7-OH yields C-C and C-O dimers that enable the molecular mechanism of their E-ring interaction with radicals to be elucidated and shows the importance of the 20-OH group in this respect. The pivotal role of the 3-OH group in the radical-scavenging activity of 2 was confirmed through the formation of another type of dimer from its selectively methylated derivative.
Citace poskytuje Crossref.org
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Chemo-enzymatic synthesis of silybin and 2,3-dehydrosilybin dimers