Literature DB >> 23670793

Substituent effects on oxidation-induced formation of quinone methides from arylboronic ester precursors.

Sheng Cao1, Robin Christiansen, Xiaohua Peng.   

Abstract

A series of arylboronic esters containing different aromatic substituents and various benzylic leaving groups (Br or N(+)Me3Br(-)) have been synthesized. The substituent effects on their reactivity with H2O2 and formation of quinone methide (QM) have been investigated. NMR spectroscopy and ethyl vinyl ether (EVE) trapping experiments were used to determine the reaction mechanism and QM formation, respectively. QMs were not generated during oxidative cleavage of the boronic esters but by subsequent transformation of the phenol products under physiological conditions. The oxidative deboronation is facilitated by electron-withdrawing substituents, such as aromatic F, NO2, or benzylic N(+)Me3Br(-), whereas electron-donating substituents or a better leaving group favor QM generation. Compounds containing an aromatic CH3 or OMe group, or a good leaving group (Br), efficiently generate QMs under physiological conditions. Finally, a quantitative relationship between the structure and activity has been established for the arylboronic esters by using a Hammett plot. The reactivity of the arylboronic acids/esters and the inhibition or facilitation of QM formation can now be predictably adjusted. This adjustment is important as some applications may benefit and others may be limited by QM generation.
Copyright © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

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Year:  2013        PMID: 23670793     DOI: 10.1002/chem.201300539

Source DB:  PubMed          Journal:  Chemistry        ISSN: 0947-6539            Impact factor:   5.236


  6 in total

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Review 4.  Novel delivery approaches for cancer therapeutics.

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5.  The leaving group strongly affects H₂O₂-induced DNA cross-linking by arylboronates.

Authors:  Sheng Cao; Yibin Wang; Xiaohua Peng
Journal:  J Org Chem       Date:  2014-01-06       Impact factor: 4.354

6.  Targeting duplex DNA with the reversible reactivity of quinone methides.

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  6 in total

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