The mechanism for the biomimetic synthesis of flavonolignan diastereoisomers in milk thistle is proposed to proceed by single-electron oxidation of coniferyl alcohol, subsequent reaction with one of the oxygen atoms of taxifolin’s catechol moiety, and finally, further oxidation to form four of the major components of silymarin: silybin A, silybin B, isosilybin A, and isosilybin B. This mechanism is significantly different from a previously proposed process that involves the coupling of two independently formed radicals
In recent years, plant polyphenols have attracted great attention due to their wide range of biologi...
Phenolic compounds form one of the main classes of secondary metabolites. They display a large range...
During the biosynthesis of the tricyclic flavonoid natural products in plants, oxidative modificatio...
The mechanism for the biomimetic synthesis of flavonolignan diastereoisomers in milk thistle is prop...
Silymarin, a flavonolignan mixture from milk thistle (Silybum marianum, Asteraceae), is mainly used ...
Dimerization of phenolic compounds can potentially enhance their biological (antioxidant) activity. ...
Extract from milk thistle (Silybum marianum (L.) Gaertn., synonym Carduus marianus L., Asteraceae) s...
Milk thistle (Silybum marianum) is a medicinal plant that has been used for thousands of years as a ...
Quantitative correlations between the contents of the flavonolignans silychristin A and silybins A/B...
In recent years, there has been increasing interest in dimeric molecules due to reports of their pro...
Flavonoids and flavonolignans are widely distributed among various citrus plants and are frequently ...
A selective acylation protocol using cerium chloride (CeCl3) as catalyst was applied to functionaliz...
The oxidation of selected bioflavonoids (quercetin, rhamnazin, fisetin, rhamnetin, taxifolin, luteol...
Our investigations into the stability of tincture preparations of milk thistle fruit [Silybum marian...
The electrochemical oxidation of the natural antioxidant 2,3-dehydrosilybin (<b>DHS</b>) was investi...
In recent years, plant polyphenols have attracted great attention due to their wide range of biologi...
Phenolic compounds form one of the main classes of secondary metabolites. They display a large range...
During the biosynthesis of the tricyclic flavonoid natural products in plants, oxidative modificatio...
The mechanism for the biomimetic synthesis of flavonolignan diastereoisomers in milk thistle is prop...
Silymarin, a flavonolignan mixture from milk thistle (Silybum marianum, Asteraceae), is mainly used ...
Dimerization of phenolic compounds can potentially enhance their biological (antioxidant) activity. ...
Extract from milk thistle (Silybum marianum (L.) Gaertn., synonym Carduus marianus L., Asteraceae) s...
Milk thistle (Silybum marianum) is a medicinal plant that has been used for thousands of years as a ...
Quantitative correlations between the contents of the flavonolignans silychristin A and silybins A/B...
In recent years, there has been increasing interest in dimeric molecules due to reports of their pro...
Flavonoids and flavonolignans are widely distributed among various citrus plants and are frequently ...
A selective acylation protocol using cerium chloride (CeCl3) as catalyst was applied to functionaliz...
The oxidation of selected bioflavonoids (quercetin, rhamnazin, fisetin, rhamnetin, taxifolin, luteol...
Our investigations into the stability of tincture preparations of milk thistle fruit [Silybum marian...
The electrochemical oxidation of the natural antioxidant 2,3-dehydrosilybin (<b>DHS</b>) was investi...
In recent years, plant polyphenols have attracted great attention due to their wide range of biologi...
Phenolic compounds form one of the main classes of secondary metabolites. They display a large range...
During the biosynthesis of the tricyclic flavonoid natural products in plants, oxidative modificatio...