4.5 Article

Synthesis of sulfonamide- and sulfonyl-phenylboronic acid-modified silica phases for boronate affinity chromatography at physiological pH

Journal

ANALYTICAL BIOCHEMISTRY
Volume 372, Issue 2, Pages 227-236

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ab.2007.09.001

Keywords

boronate affinity; sulfonyl -and sulfonamide-phenylboronic acid; liquid chromatography

Funding

  1. NIA NIH HHS [AG25350, R01 AG025350-04, R01 AG025350, R01 AG025350-03, R01 AG025350-01, R01 AG025350-02] Funding Source: Medline

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Two new types of boronate affinity solid phases were synthesized and characterized. The materials were prepared by silylation of porous silica gel with monochlorosilane derivatives containing synthetic sulfonyl- and sulfonamide-substituted phenylboronic acids. The new solid phases were evaluated for boronate affinity chromatography with aryl and alkyl cis-diol compounds and were found to be suitable for the retention of cis-diols under acidic conditions. Significant correlations between the retention factor (K) and the pH of the mobile phase demonstrate that the binding of cis-diols to the solid phases is best rationalized by chelation. Based on the lower pK(a,) caused by the electron-withdrawing effects of the sulfonyl and sulfonamide groups, these media display an enhanced affinity for cis-diols as compared with unsubstituted phenylboronic acid. Using isocratic elution, a mixture of various biologically relevant L-tyrosines, L-DOPA, and several catecholamines were resolved with a mobile phase composed of 0.05 M phosphate buffer (pH 5.5). Mono-, di-, and triphosphates of adenosine were also separated at pH 6.0. Hence, the new boronate solid phase offers efficient affinity separation and purification of cis-diol-containing molecules under rather mild pH conditions. (C) 2007 Elsevier Inc. All rights reserved.

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