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Updated: May 12, 2026

DNA-magnetic Particle Binding Analysis by Dynamic and Electrophoretic Light Scattering
Published on: November 9, 2017
Synthesis and Validation of Dextran-Based Hydrophilic Magnetic Nanomaterials for Glycopeptide Enrichment
Li Cheng1,2, Qirui Fu1, Mingxian Huang2,3
1Wisdom Lake Academy of Pharmacy, Xi'an Jiaotong-Liverpool University, Suzhou, China.
Abstract:
Glycopeptide enrichment is an essential prerequisite in mass spectrometry (MS)-based protein glycosylation studies, due to the low abundance of glycosylated peptides and the high complexity of biological samples, which contain substantial interference from non-glycosylated metabolites. Current enrichment strategies commonly exploit the polar interactions between glycans and hydrophilic solid-phase materials. Building on existing magnetic-core particles, we developed a series of novel magnetic materials with surfaces functionalized with dextran and amide groups. The magnetic core, composed of polyvinylpyrrolidone (PVP) and Fe3O4, was sequentially coated with SiO2 and dextran. Amide groups were then conjugated to the dextran layer via a condensation reaction between carboxy-modified dextran and ethanolamine. The glycopeptide enrichment performance of five resulting magnetic materials was evaluated using IgG and rat serum samples. One material, designated Fe3O4@SiO2@Dextran-Amide (Dextran-polyamide-717), demonstrated superior sensitivity for glycopeptide detection and strong resistance to nonspecific interference. Moreover, Dextran-polyamide-717 exhibited higher enrichment efficiency in both IgG and serum samples compared to two commercially available products. With its multilayer surface modification strategy, Dextran-polyamide-717 shows great promise for advanced applications in glycoproteomic research.

