Biomedical sciences, and in particular biomarker research, demand efficient glycoprotein enrichment platforms. In this paper, a facile and efficient approach combining distillation-precipitation polymerization (DPP) and click chemistry was developed to synthesize boronic acid ligand-modified magnetic nanoparticles for the enrichment of glycoproteins. Due to the relatively large amount of benzyl chloride groups introduced by DPP on the magnetic core, which easily can be transferred into azide groups, the alkyne-phenylboronic acid ligands were immobilized onto the surface of Fe3O4 with high efficiency via the Cu(I)-catalyzed azide-alkyne cycloaddition (CuAAC) 'click' reaction. The morphology, structure and composition of the resulting core-sh...
ABSTRACT: Boronic acid affinity gels are important for effective separation of biological active cis...
In this work, a facile novel strategy is developed for the preparation of 4-mercapto-phenylboronic a...
In this paper, we present a new modular approach to immobilize boronic acid ligands that can offer e...
In this work, a novel strategy is developed for the fabrication of phenylboronic acid functionalized...
In this study, a novel approach was developed to synthesize aminophenylboronic acid functionalized m...
Biomedical sciences, and in particular biomarker research, demand efficient glycoproteins enrichment...
A simple, novel approach was developed for the preparation of boronic acid functionalized Fe3O4 magn...
Biomedical sciences, and in particular biomarker research, demand efficient glycoprotein enrichment ...
Stimuli-responsive core-shell nanoparticles, with 3-acrylamidophenyl boronic acid (APBA) as the func...
The boronic acid-functionalized coreshell polymer nanoparticles, poly(N,N-methylenebisacrylamide-co-...
In this study, we report a novel method to synthesize core-shell structured Fe3O4 nanoparticles (NPs...
In this report, we present a novel modular approach to the immobilization of a high density of boron...
A new facile strategy was designed to prepare the phenyboronic acid-functionalized Fe3O4 magnetic na...
Boronic acid based affinity materials are of great importance for effective enrichment of biomolecul...
In this article, we described click chemistry methodology for the incorporation of biocompatible pol...
ABSTRACT: Boronic acid affinity gels are important for effective separation of biological active cis...
In this work, a facile novel strategy is developed for the preparation of 4-mercapto-phenylboronic a...
In this paper, we present a new modular approach to immobilize boronic acid ligands that can offer e...
In this work, a novel strategy is developed for the fabrication of phenylboronic acid functionalized...
In this study, a novel approach was developed to synthesize aminophenylboronic acid functionalized m...
Biomedical sciences, and in particular biomarker research, demand efficient glycoproteins enrichment...
A simple, novel approach was developed for the preparation of boronic acid functionalized Fe3O4 magn...
Biomedical sciences, and in particular biomarker research, demand efficient glycoprotein enrichment ...
Stimuli-responsive core-shell nanoparticles, with 3-acrylamidophenyl boronic acid (APBA) as the func...
The boronic acid-functionalized coreshell polymer nanoparticles, poly(N,N-methylenebisacrylamide-co-...
In this study, we report a novel method to synthesize core-shell structured Fe3O4 nanoparticles (NPs...
In this report, we present a novel modular approach to the immobilization of a high density of boron...
A new facile strategy was designed to prepare the phenyboronic acid-functionalized Fe3O4 magnetic na...
Boronic acid based affinity materials are of great importance for effective enrichment of biomolecul...
In this article, we described click chemistry methodology for the incorporation of biocompatible pol...
ABSTRACT: Boronic acid affinity gels are important for effective separation of biological active cis...
In this work, a facile novel strategy is developed for the preparation of 4-mercapto-phenylboronic a...
In this paper, we present a new modular approach to immobilize boronic acid ligands that can offer e...