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Discrimination between sialic acid linkage modes using sialyllactose-imprinted polymers

Glycosylation plays an important role in various pathological processes such as cancer. One key alteration in the glycosylation pattern correlated with cancer progression is an increased level as well as changes in the type of sialylation. Developing molecularly-imprinted polymers (MIPs) with high a...

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Autores principales: Mavliutova, Liliia, Munoz Aldeguer, Bruna, Wiklander, Jesper, Wierzbicka, Celina, Huynh, Chau Minh, Nicholls, Ian A., Irgum, Knut, Sellergren, Börje
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9034230/
https://www.ncbi.nlm.nih.gov/pubmed/35480790
http://dx.doi.org/10.1039/d1ra02274a
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author Mavliutova, Liliia
Munoz Aldeguer, Bruna
Wiklander, Jesper
Wierzbicka, Celina
Huynh, Chau Minh
Nicholls, Ian A.
Irgum, Knut
Sellergren, Börje
author_facet Mavliutova, Liliia
Munoz Aldeguer, Bruna
Wiklander, Jesper
Wierzbicka, Celina
Huynh, Chau Minh
Nicholls, Ian A.
Irgum, Knut
Sellergren, Börje
author_sort Mavliutova, Liliia
collection PubMed
description Glycosylation plays an important role in various pathological processes such as cancer. One key alteration in the glycosylation pattern correlated with cancer progression is an increased level as well as changes in the type of sialylation. Developing molecularly-imprinted polymers (MIPs) with high affinity for sialic acid able to distinguish different glycoforms such as sialic acid linkages is an important task which can help in early cancer diagnosis. Sialyllactose with α2,6′ vs. α2,3′ sialic acid linkage served as a model trisaccharide template. Boronate chemistry was employed in combination with a library of imidazolium-based monomers targeting the carboxylate group of sialic acid. The influence of counterions of the cationic monomers and template on their interactions was investigated by means of (1)H NMR titration studies. The highest affinities were afforded using a combination of Br(−) and Na(+) counterions of the monomers and template, respectively. The boronate ester formation was confirmed by MS and (1)H/(11)B NMR, indicating 1 : 2 stoichiometries between sialyllactoses and boronic acid monomer. Polymers were synthesized in the form of microparticles using boronate and imidazolium monomers. This combinatorial approach afforded MIPs selective for the sialic acid linkages and compatible with an aqueous environment. The molecular recognition properties with respect to saccharide templates and glycosylated targets were reported.
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spelling pubmed-90342302022-04-26 Discrimination between sialic acid linkage modes using sialyllactose-imprinted polymers Mavliutova, Liliia Munoz Aldeguer, Bruna Wiklander, Jesper Wierzbicka, Celina Huynh, Chau Minh Nicholls, Ian A. Irgum, Knut Sellergren, Börje RSC Adv Chemistry Glycosylation plays an important role in various pathological processes such as cancer. One key alteration in the glycosylation pattern correlated with cancer progression is an increased level as well as changes in the type of sialylation. Developing molecularly-imprinted polymers (MIPs) with high affinity for sialic acid able to distinguish different glycoforms such as sialic acid linkages is an important task which can help in early cancer diagnosis. Sialyllactose with α2,6′ vs. α2,3′ sialic acid linkage served as a model trisaccharide template. Boronate chemistry was employed in combination with a library of imidazolium-based monomers targeting the carboxylate group of sialic acid. The influence of counterions of the cationic monomers and template on their interactions was investigated by means of (1)H NMR titration studies. The highest affinities were afforded using a combination of Br(−) and Na(+) counterions of the monomers and template, respectively. The boronate ester formation was confirmed by MS and (1)H/(11)B NMR, indicating 1 : 2 stoichiometries between sialyllactoses and boronic acid monomer. Polymers were synthesized in the form of microparticles using boronate and imidazolium monomers. This combinatorial approach afforded MIPs selective for the sialic acid linkages and compatible with an aqueous environment. The molecular recognition properties with respect to saccharide templates and glycosylated targets were reported. The Royal Society of Chemistry 2021-06-24 /pmc/articles/PMC9034230/ /pubmed/35480790 http://dx.doi.org/10.1039/d1ra02274a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Mavliutova, Liliia
Munoz Aldeguer, Bruna
Wiklander, Jesper
Wierzbicka, Celina
Huynh, Chau Minh
Nicholls, Ian A.
Irgum, Knut
Sellergren, Börje
Discrimination between sialic acid linkage modes using sialyllactose-imprinted polymers
title Discrimination between sialic acid linkage modes using sialyllactose-imprinted polymers
title_full Discrimination between sialic acid linkage modes using sialyllactose-imprinted polymers
title_fullStr Discrimination between sialic acid linkage modes using sialyllactose-imprinted polymers
title_full_unstemmed Discrimination between sialic acid linkage modes using sialyllactose-imprinted polymers
title_short Discrimination between sialic acid linkage modes using sialyllactose-imprinted polymers
title_sort discrimination between sialic acid linkage modes using sialyllactose-imprinted polymers
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9034230/
https://www.ncbi.nlm.nih.gov/pubmed/35480790
http://dx.doi.org/10.1039/d1ra02274a
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