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  4. Redox-responsive interleukin-2 nanogel specifically and safely promotes the proliferation and memory precursor differentiation of tumor-reactive T-cells
 
research article

Redox-responsive interleukin-2 nanogel specifically and safely promotes the proliferation and memory precursor differentiation of tumor-reactive T-cells

Xie, Yu-Qing
•
Arik, Hacer
•
Wei, Lixia  
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April 1, 2019
Biomaterials Science

Interleukin-2 (IL-2) is a potent T-cell mitogen that can adjuvant anti-cancer adoptive T-cell transfer (ACT) immunotherapy by promoting T-cell engraftment. However, the clinical applications of IL-2 in combination with ACT are greatly hindered by the severe adverse effects such as vascular leak syndrome (VLS). Here, we developed a synthetic delivery strategy for IL-2 via backpacking redox-responsive IL-2/Fc nanogels (NGs) to the plasma membrane of adoptively transferred T-cells. The NGs prepared by traceless chemical cross-linking of cytokine proteins selectively released the cargos in response to T-cell receptor activation upon antigen recognition in tumors. We found that IL-2/Fc delivered by T-cell surface-bound NGs expanded transferred tumor-reactive T-cells 80-fold more than the free IL-2/Fc of an equivalent dose administered systemically and showed no effects on tumor-infiltrating regulatory T-cell expansion. Intriguingly, IL-2/Fc NG backpacks that facilitated a sustained and slow release of IL-2/Fc also promoted the CD8(+) memory precursor differentiation and induced less T-cell exhaustion in vitro compared to free IL-2/Fc. The controlled responsive delivery of IL-2/Fc enabled the safe administration of repeated doses of the stimulant cytokine with no overt toxicity and improved efficacy against melanoma metastases in a mice model.

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Type
research article
DOI
10.1039/c8bm01556b
Web of Science ID

WOS:000463746600008

Author(s)
Xie, Yu-Qing
Arik, Hacer
Wei, Lixia  
Zheng, Yiran
Suh, Heikyung
Irvine, Darrell J.
Tang, Li
Date Issued

2019-04-01

Published in
Biomaterials Science
Volume

7

Issue

4

Start page

1345

End page

1357

Subjects

Materials Science, Biomaterials

•

Materials Science

•

infiltrating lymphocytes

•

receptor

•

il-2

•

immunotherapy

•

melanoma

•

expansion

•

therapy

•

gene

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LBI  
FunderGrant Number

FNS

315230_173243

Available on Infoscience
June 18, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/157443
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