We report here the first selective de-O-methylation of a large panel of guaiacyl lignans to the corresponding catechol derivatives by using IBX as primary oxidant under green conditions (dimethyl carbonate-H(2)O solvent) through an in situ reduction procedure. The influence of the catechol moiety on the cytotoxicity and genotoxicity of new lignan derivatives has been investigated. The results obtained indicated that the presence of the catechol moiety sharply enhances the clastogenic potential (e. g. induction of chromosomal aberrations), the cytotoxicity and the modulation of cell cycle progression with respect to the parent compounds. Thus, despite the in vitro antioxidant activity usually described for catechol derivatives, our results show for the first time the generation of a clastogenic potential, highly indicative of a long-term genetic and cancer risk.

A selective de-O-methylation of guaiacyl lignans to corresponding catechol derivatives by 2-iodoxybenzoic acid (IBX). The role of the catechol moiety on the toxicity of lignans / Bernini, R., Barontini, M., Mosesso, P., Pepe, G., Willfor Stefan, M., Sjoeholm, ., Rainer E., E., Patrik, C., Saladino, R.. - In: ORGANIC & BIOMOLECULAR CHEMISTRY. - ISSN 1477-0520. - 7(11):(2009), pp. 2367-2377. [10.1039/b822661j]

A selective de-O-methylation of guaiacyl lignans to corresponding catechol derivatives by 2-iodoxybenzoic acid (IBX). The role of the catechol moiety on the toxicity of lignans

SALADINO R
2009

Abstract

We report here the first selective de-O-methylation of a large panel of guaiacyl lignans to the corresponding catechol derivatives by using IBX as primary oxidant under green conditions (dimethyl carbonate-H(2)O solvent) through an in situ reduction procedure. The influence of the catechol moiety on the cytotoxicity and genotoxicity of new lignan derivatives has been investigated. The results obtained indicated that the presence of the catechol moiety sharply enhances the clastogenic potential (e. g. induction of chromosomal aberrations), the cytotoxicity and the modulation of cell cycle progression with respect to the parent compounds. Thus, despite the in vitro antioxidant activity usually described for catechol derivatives, our results show for the first time the generation of a clastogenic potential, highly indicative of a long-term genetic and cancer risk.
2009
LIGNIN MODEL COMPOUNDS; METHYLTRIOXORHENIUM; ANTIOXIDANT ACTIVITY
01 Pubblicazione su rivista::01a Articolo in rivista
A selective de-O-methylation of guaiacyl lignans to corresponding catechol derivatives by 2-iodoxybenzoic acid (IBX). The role of the catechol moiety on the toxicity of lignans / Bernini, R., Barontini, M., Mosesso, P., Pepe, G., Willfor Stefan, M., Sjoeholm, ., Rainer E., E., Patrik, C., Saladino, R.. - In: ORGANIC & BIOMOLECULAR CHEMISTRY. - ISSN 1477-0520. - 7(11):(2009), pp. 2367-2377. [10.1039/b822661j]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1766446
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