2012
DOI: 10.1039/c2cc30230f
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A benzoboroxole-functionalized monolithic column for the selective enrichment and separation of cis-diol containing biomolecules

Abstract: A benzoboroxole-functionalized monolithic column was synthesized, which exhibited the best specificity and affinity towards cis-diol containing biomolecules as compared with the boronate affinity monolithic columns reported as well as significant secondary separation capability under acidic conditions.

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Cited by 142 publications
(109 citation statements)
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“…Boronic acid functionalized monoliths have recently gained rising attentions [30][31][32][33][34][35][36][37][38][39][40][41][42][43][44][45][46], and a lots of attempts have been made to design boronate affinity monolith with desired properties for glycoproteomic researches. A variety of boronate affinity monoliths have been developed for specific capture of glycopeptides and glycoproteins [38][39][40][41][42][43][44].…”
Section: Introductionmentioning
confidence: 99%
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“…Boronic acid functionalized monoliths have recently gained rising attentions [30][31][32][33][34][35][36][37][38][39][40][41][42][43][44][45][46], and a lots of attempts have been made to design boronate affinity monolith with desired properties for glycoproteomic researches. A variety of boronate affinity monoliths have been developed for specific capture of glycopeptides and glycoproteins [38][39][40][41][42][43][44].…”
Section: Introductionmentioning
confidence: 99%
“…A variety of boronate affinity monoliths have been developed for specific capture of glycopeptides and glycoproteins [38][39][40][41][42][43][44]. Different from regular polymer-based boronate affinity monoliths, an inorganic-organic hybrid boronate affinity monolith synthesized via a "one-pot" process was brought into sight by Lin [44], and the monolith was successfully applied to isolation and enrichment of glycoproteins.…”
Section: Introductionmentioning
confidence: 99%
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“…In most cases, the organoboron function is exposed at the periphery of the material so that its intrinsic reactivity can be exploited to provide a given property to the material (e.g., capacity to bind to diols). This is for example the case for polymers developed for the detection of dopamine [12], for chromatographic columns designed for the separation of sugars [11,13], and for mesoporous silica nanoparticles allowing the controlled release of insulin [14]. Another possibility which has been looked into consists of using the boronic acids themselves as building blocks for the preparation of functional (nano)materials.…”
Section: Introductionmentioning
confidence: 99%
“…This reversible binding has made boronic acids excellent affinity ligands for creating functionalized materials [4][5][6].…”
Section: Introductionmentioning
confidence: 99%