Adhiron binders as molecular tools for inhibiting activation dependent, IL-7 mediated long-term survival of CD4+ T-cells

Tools that enable functional inhibition of the long-term effects of immunological signalling cascades remain challenging to develop, in part because biological outcomes often arise long after the initiating receptor-ligand interaction and lack accessible experimental readouts. Interleukin-7 (IL-7) cytokine signalling through the IL-7 receptor (IL-7R) exemplifies this problem, as IL-7-mediated survival signals in activated CD4+ T cells emerge over extended timescales, yet play a critical role in human disease. Here, we describe the development of engineered Adhiron binders as molecular tools to inhibit IL-7/IL-7R signalling. Using phage display against glycosylated human IL-7Rα ectodomains, we isolated 23 unique Adhiron binders. From this panel, we identified a lead binder, Adh-42, that binds both soluble and membrane-associated IL-7Rα. Adh-42 inhibited proximal IL-7R signalling events in human cells and abrogated IL-7-mediated rescue from activation-induced cell death in human primary CD4+ T-cell blasts (using a recently developed in vitro assay). Together, these findings demonstrate that Adhiron binders can be used to target a cell-surface cytokine receptor (IL-7R) and selectively inhibit downstream biological outcomes in human primary cells. This work establishes Adhirons as versatile molecular tools for probing IL-7 cytokine signalling and provides a framework to support the design and evaluation of future therapeutic strategies.

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Journal
Molecular Immunology
Published
2026-09-18
DOI
https://doi.org/10.1016/j.molimm.2026.09.004
Primary Topic
Magnolia and Illicium research
Type
article
Field-Weighted Citation Impact
0.00

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article

Adhiron binders as molecular tools for inhibiting activation dependent, IL-7 mediated long-term survival of CD4+ T-cells

Daniel Perez‐Witzke, James Robinson, Christian Tiede, Frédérique Ponchel et al.
Molecular Immunology
Magnolia and Illicium research
article

Adhiron binders as molecular tools for inhibiting activation dependent, IL-7 mediated long-term survival of CD4+ T-cells

Daniel Perez‐Witzke, James Robinson, Christian Tiede, Frédérique Ponchel, M.H. Guillet, Rekha Parmar, Min Lou
article en

Abstract

Tools that enable functional inhibition of the long-term effects of immunological signalling cascades remain challenging to develop, in part because biological outcomes often arise long after the initiating receptor-ligand interaction and lack accessible experimental readouts. Interleukin-7 (IL-7) cytokine signalling through the IL-7 receptor (IL-7R) exemplifies this problem, as IL-7-mediated survival signals in activated CD4+ T cells emerge over extended timescales, yet play a critical role in human disease. Here, we describe the development of engineered Adhiron binders as molecular tools to inhibit IL-7/IL-7R signalling. Using phage display against glycosylated human IL-7Rα ectodomains, we isolated 23 unique Adhiron binders. From this panel, we identified a lead binder, Adh-42, that binds both soluble and membrane-associated IL-7Rα. Adh-42 inhibited proximal IL-7R signalling events in human cells and abrogated IL-7-mediated rescue from activation-induced cell death in human primary CD4+ T-cell blasts (using a recently developed in vitro assay). Together, these findings demonstrate that Adhiron binders can be used to target a cell-surface cytokine receptor (IL-7R) and selectively inhibit downstream biological outcomes in human primary cells. This work establishes Adhirons as versatile molecular tools for probing IL-7 cytokine signalling and provides a framework to support the design and evaluation of future therapeutic strategies.

Molecular ImmunologyVol. 199
University of Leeds (GB), NIHR Leeds Musculoskeletal Biomedical Research Unit (GB), Université Jean Monnet (FR)
Faculty of Medicine and Health, University of Leeds
Zero hunger
Openalex Percentile: Top 14%
Magnolia and Illicium research
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