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Reference type: Journal
Authors: Chen W, Guo ZY, Yu H, Liu QY, Fu M
Article Title: Molecularly imprinted colloidal array with multi-boronic acid sites for glycoprotein detection under neutral pH.
Publication date: 2022
Journal: Journal of Colloid and Interface Science
Volume: 607
Page numbers: 1163-1172.
DOI: 10.1016/j.jcis.2021.09.048
Alternative URL: https://www.sciencedirect.com/science/article/pii/S0021979721015071

Abstract: Glycoproteins play vital roles in living organisms and often serve as biomarkers for some disease. However, due to the low content of glycoprotein in biological fluids, selective detection of glycoproteins is still a challenging issue that needs to be addressed. In this study, molecularly imprinted colloidal array with multi-boronic acid sites for glycoprotein detection under physiological pH was proposed. Monodispersed glycoprotein imprinted particles (SiO2@PEI/MIPs) was first prepared based on surface imprinting strategy using horseradish peroxidase (HRP) as template, and polyethyleneimine (PEI) was used to increase the number of boronic acid groups. The binding experiment indicated that the SiO2@PEI/MIPs hold satisfactory adsorption capacity (1.41 μmol/g), rapid adsorption rate (40 min) and preferable selectivity toward HRP. Then the SiO2@PEI/MIPs was assembled into close-packed colloidal array to construct a label free optical sensor (denoted as GICA). Benefiting from the high ordered photonic crystal structure, binding of HRP onto the GICA could be directly readout from the changes in structure color and diffracted wavelength. The structure color of the GICA changed from bright blue to yellow with the diffraction wavelength red shifted 59 nm when the HRP concentration increased from 2.5 to 15 μmol/L. Importantly, the GICA was capable of detecting HRP from human serum samples. All those results indicated the potential of the GICA for naked-eye detection of glycoprotein
Template and target information: protein, glycoprotein, horseradish peroxidase, HRP
Author keywords: Glycoprotein detection, Multi-boronic acid sites, Colloidal array, surface imprinting


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