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research article

Synthetically glycosylated antigens induce antigen-specific tolerance and prevent the onset of diabetes

Wilson, D. Scott
•
Damo, Martina
•
Hirosue, Sachiko  
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October 1, 2019
Nature Biomedical Engineering

Homeostatic antigen presentation by hepatic antigen-presenting cells, which results in tolerogenic T-cell education, could be exploited to induce antigen-specific immunological tolerance. Here we show that antigens modified with polymeric forms of either N-acetylgalactosamine or N-acetylglucosamine target hepatic antigen-presenting cells, increase their antigen presentation and induce antigen-specific tolerance, as indicated by CD4(+) and CD8(+) T-cell deletion and anergy. These synthetically glycosylated antigens also expanded functional regulatory Tcells, which are necessary for the durable suppression of antigen-specific immune responses. In an adoptive-transfer mouse model of type-1 diabetes, treatment with the glycosylated autoantigens prevented T-cell-mediated diabetes, expanded antigen-specific regulatory T cells and resulted in lasting tolerance to a subsequent challenge with activated diabetogenic T cells. Glycosylated autoantigens targeted to hepatic antigen-presenting cells might enable therapies that promote immune tolerance in patients with autoimmune diseases.

  • Details
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Type
research article
DOI
10.1038/s41551-019-0424-1
Web of Science ID

WOS:000489154800011

Author(s)
Wilson, D. Scott
Damo, Martina
Hirosue, Sachiko  
Raczy, Michal M.
Bruenggel, Kym
Diaceri, Giacomo
Quaglia-Thermes, Xavier
Hubbell, Jeffrey A.  
Date Issued

2019-10-01

Published in
Nature Biomedical Engineering
Volume

3

Issue

10

Start page

817

End page

829

Subjects

Engineering, Biomedical

•

Engineering

•

sinusoidal endothelial-cells

•

regulatory t-cells

•

growth-factor-beta

•

c-type lectin

•

asialoglycoprotein receptor

•

mannose receptor

•

cross-presentation

•

kupffer cells

•

rat-liver

•

in-vitro

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LMRP  
Available on Infoscience
October 20, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/162117
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