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Chemo-enzymatic synthesis of silybin and 2,3-dehydrosilybin dimers
E. Vavříková, J. Vacek, K. Valentová, P. Marhol, J. Ulrichová, M. Kuzma, V. Křen,
Language English Country Switzerland
Document type Journal Article, Research Support, Non-U.S. Gov't
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- MeSH
- Biphenyl Compounds antagonists & inhibitors MeSH
- Biocatalysis MeSH
- Hep G2 Cells MeSH
- Dimerization MeSH
- Human Umbilical Vein Endothelial Cells MeSH
- Fibroblasts cytology drug effects MeSH
- Fungal Proteins chemistry MeSH
- Microsomes, Liver drug effects MeSH
- Keratinocytes cytology drug effects MeSH
- Rats MeSH
- Humans MeSH
- Lipase chemistry MeSH
- Mice MeSH
- Oxidation-Reduction MeSH
- Lipid Peroxidation drug effects MeSH
- Picrates antagonists & inhibitors MeSH
- Free Radical Scavengers chemical synthesis pharmacology MeSH
- Silymarin chemical synthesis pharmacology MeSH
- Cell Survival drug effects MeSH
- Animals MeSH
- Check Tag
- Rats MeSH
- Humans MeSH
- Mice MeSH
- Animals MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
Divalent or multivalent molecules often show enhanced biological activity relative to the simple monomeric units. Here we present enzymatically and chemically prepared dimers of the flavonolignans silybin and 2,3-dehydrosilybin. Their electrochemical behavior was studied by in situ and ex situ square wave voltammetry. The oxidation of monomers and dimers was similar, but adsorption onto the electrode and cell surfaces was different. A 1,1-diphenyl-2-picrylhydrazyl (DPPH) and an inhibition of microsomal lipoperoxidation assay were performed with same trend of results for silybin and 2,3-dehydrosilybin dimers. Silybin dimer showed better activity than the monomer, while on the contrary 2,3-dehydrosilybin dimer presented weaker antioxidant/antilipoperoxidant activity than its monomer. Cytotoxicity was evaluated on human umbilical vein endothelial cells, normal human adult keratinocytes, mouse fibroblasts (BALB/c 3T3) and human liver hepatocellular carcinoma cell line (HepG2). Silybin dimer was more cytotoxic than the parent compound and in the case of 2,3-dehydrosilybin its dimer showed weaker cytotoxicity than the monomer.
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- $a Vavříková, Eva $u Institute of Microbiology, Academy of Sciences of the Czech Republic, Vídeňská 1083, CZ-142 20 Prague 4, Czech Republic. vavrikova@biomed.cas.cz.
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- $a Chemo-enzymatic synthesis of silybin and 2,3-dehydrosilybin dimers / $c E. Vavříková, J. Vacek, K. Valentová, P. Marhol, J. Ulrichová, M. Kuzma, V. Křen,
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- $a Divalent or multivalent molecules often show enhanced biological activity relative to the simple monomeric units. Here we present enzymatically and chemically prepared dimers of the flavonolignans silybin and 2,3-dehydrosilybin. Their electrochemical behavior was studied by in situ and ex situ square wave voltammetry. The oxidation of monomers and dimers was similar, but adsorption onto the electrode and cell surfaces was different. A 1,1-diphenyl-2-picrylhydrazyl (DPPH) and an inhibition of microsomal lipoperoxidation assay were performed with same trend of results for silybin and 2,3-dehydrosilybin dimers. Silybin dimer showed better activity than the monomer, while on the contrary 2,3-dehydrosilybin dimer presented weaker antioxidant/antilipoperoxidant activity than its monomer. Cytotoxicity was evaluated on human umbilical vein endothelial cells, normal human adult keratinocytes, mouse fibroblasts (BALB/c 3T3) and human liver hepatocellular carcinoma cell line (HepG2). Silybin dimer was more cytotoxic than the parent compound and in the case of 2,3-dehydrosilybin its dimer showed weaker cytotoxicity than the monomer.
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- $a Vacek, Jan $u Department of Medical Chemistry and Biochemistry, Faculty of Medicine and Dentistry, Palacký University, Hněvotínská 3, CZ-775 15 Olomouc, Czech Republic. jan.vacek@upol.cz.
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- $a Ulrichová, Jitka $u Department of Medical Chemistry and Biochemistry, Faculty of Medicine and Dentistry, Palacký University, Hněvotínská 3, CZ-775 15 Olomouc, Czech Republic. jitka.ulrichova@upol.cz.
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- $a Křen, Vladimír $u Institute of Microbiology, Academy of Sciences of the Czech Republic, Vídeňská 1083, CZ-142 20 Prague 4, Czech Republic. kren@biomed.cas.cz.
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