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Engineering Surfaces with Immune Modulating Properties of Mucin Hydrogels.

Abstract

Hydrogels of cross-linked mucin glycoproteins (Muc-gel) have shown strong immune-modulating properties toward macrophages in vitro, which are translated in vivo by the dampening of the foreign body response to implantation in mice. Beyond mucin hydrogels, other biomaterials such as sensors, electrodes, and other long-term implants would also benefit from such immune-modulating properties. In this work, we aimed to transfer the bioactivity observed for three-dimensional Muc-gels to the surface of two model materials by immobilizing mucin into thin films (Muc-film) using covalent layer-by-layer assembly. We tested how the surface immobilization of mucins affects macrophage responses compared to Muc-gels. We showed that Muc-films on soft polyacrylamide gels mimic Muc-gel in their modulation of macrophage responses with activated gene expression of inflammatory cytokines on day 1 and then dampening them on day 3. Also, the markers of polarized macrophages, M1 and M2, were expressed at the same level for macrophages on Muc-film-coated soft polyacrylamide gels and Muc-gel. In contrast, Muc-film-coated hard polystyrene led to a different macrophage response compared to Muc-gel, having no activated expression of inflammatory cytokines and a different M1 marker expression. This suggested that the substrate mechanical properties and mucin molecular configuration determined by substrate-mucin interactions affect mucin immune-modulating properties. We conclude that mucin immune-modulating properties can be transferred to materials by mucin surface immobilization but will be dependent on the substrate chemical and mechanical properties.

Authors

Kun Jiang, Xueyu Wen, Torbjörn Pettersson, Thomas Crouzier

Division of Glycoscience, Department of Chemistry, School of Engineering Sciences in Chemistry, Biotechnology and Health, KTH, Royal Institute of Technology, AlbaNova University Center, Stockholm 106 91, Sweden, AIMES - Center for the Advancement of Integrated Medical and Engineering Sciences at Karolinska Institutet and KTH Royal Institute of Technology, Stockholm SE-100 44, Sweden, Department of Neuroscience, Karolinska Institutet, Stockholm SE-171 77, Sweden.

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14 products referenced in this paper

(A-11008) Goat anti-Rabbit IgG (H+L) Cross-Adsorbed Secondary Antibody, Alexa Fluor™ 488

an Antibody by Invitrogen Antibodies

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ICC-IF

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Homo sapiens (Human)

(ab64693) Anti-Mannose Receptor antibody

an Antibody by Abcam

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ICC-IF

Reactivity:

Homo sapiens (Human)

(MA1-81381) Calprotectin Monoclonal Antibody (MAC387)

an Antibody by Invitrogen Antibodies

Applications:

ICC-IF

Reactivity:

Homo sapiens (Human)

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Journal ACS Applied Materials Interfaces

Volume 14

Issue 35

Pages 39727-39735

Publication Date 7 September 2022

View on PubMed®

Publication metadata is provided by PubMed®, courtesy of the U.S. National Library of Medicine. Information for this publication was last updated on 2025-04-08 11:18:23 UTC.

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