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Autor(en) / Beteiligte
Titel
Anti‐ CD 25 monoclonal antibody Fc variants differentially impact regulatory T cells and immune homeostasis
Ist Teil von
  • Immunology, 2016-07, Vol.148 (3), p.276-286
Erscheinungsjahr
2016
Quelle
Alma/SFX Local Collection
Beschreibungen/Notizen
  • Summary Interleukin‐2 ( IL ‐2) is a critical regulator of immune homeostasis through its non‐redundant role in regulatory T (Treg) cell biology. There is major interest in therapeutic modulation of the IL ‐2 pathway to promote immune activation in the context of tumour immunotherapy or to enhance immune suppression in the context of transplantation, autoimmunity and inflammatory diseases. Antibody‐mediated targeting of the high‐affinity IL ‐2 receptor α chain ( IL ‐2R α or CD 25) offers a direct mechanism to target IL ‐2 biology and is being actively explored in the clinic. In mouse models, the rat anti‐mouse CD 25 clone PC 61 has been used extensively to investigate the biology of IL ‐2 and Treg cells; however, there has been controversy and conflicting data on the exact in vivo mechanistic function of PC 61. Engineering antibodies to alter Fc/Fc receptor interactions can significantly alter their in vivo function. In this study, we re‐engineered the heavy chain constant region of an anti‐ CD 25 monoclonal antibody to generate variants with highly divergent Fc effector function. Using these anti‐ CD 25 Fc variants in multiple mouse models, we investigated the in vivo impact of CD 25 blockade versus depletion of CD 25 + Treg cells on immune homeostasis. We report that immune homeostasis can be maintained during CD 25 blockade but aberrant T‐cell activation prevails when CD 25 + Treg cells are actively depleted. These results clarify the impact of PC 61 on Treg cell biology and reveal an important distinction between CD 25 blockade and depletion of CD 25 + Treg cells. These findings should inform therapeutic manipulation of the IL ‐2 pathway by targeting the high‐affinity IL ‐2R.
Sprache
Englisch
Identifikatoren
ISSN: 0019-2805
eISSN: 1365-2567
DOI: 10.1111/imm.12609
Titel-ID: cdi_crossref_primary_10_1111_imm_12609
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