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OX40L/OX40 axis impairs follicular and natural Treg function in human SLE
Clément Jacquemin, … , Cécile Contin-Bordes, Patrick Blanco
Clément Jacquemin, … , Cécile Contin-Bordes, Patrick Blanco
Published December 20, 2018
Citation Information: JCI Insight. 2018;3(24):e122167. https://doi.org/10.1172/jci.insight.122167.
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Research Article Immunology

OX40L/OX40 axis impairs follicular and natural Treg function in human SLE

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Abstract

Tregs are impaired in human systemic lupus erythematosus (SLE) and contribute to effector T cell activation. However, the mechanisms responsible for the Treg deficiency in SLE remain unclear. We hypothesized that the OX40L/OX40 axis is implicated in Treg and regulatory follicular helper T (Tfr) cell dysfunction in human SLE. OX40L/OX40 axis engagement on Tregs and Tfr cells not only specifically impaired their ability to regulate effector T cell proliferation, but also their ability to suppress T follicular helper (Tfh) cell–dependent B cell activation and immunoglobulin secretion. Antigen-presenting cells from patients with active SLE mediated Treg dysfunction in an OX40L-dependent manner, and OX40L-expressing cells colocalized with Foxp3+ cells in active SLE skin lesions. Engagement of the OX40L/OX40 axis resulted in Foxp3 downregulation in Tregs, and expression in SLE Tregs correlated with the proportion of circulating OX40L-expressing myeloid DCs. These data support that OX40L/OX40 signals are implicated in Treg dysfunction in human SLE. Thus, blocking the OX40L/OX40 axis appears to be a promising therapeutic strategy.

Authors

Clément Jacquemin, Jean-François Augusto, Marc Scherlinger, Noémie Gensous, Edouard Forcade, Isabelle Douchet, Emeline Levionnois, Christophe Richez, Estibaliz Lazaro, Pierre Duffau, Marie-Elise Truchetet, Julien Seneschal, Lionel Couzi, Jean-Luc Pellegrin, Jean-François Viallard, Thierry Schaeverbeke, Virginia Pascual, Cécile Contin-Bordes, Patrick Blanco

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Figure 5

The association of blood Tfh and Tfr cells in HDs and SLE patients with disease activity and plasmablast frequency.

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The association of blood Tfh and Tfr cells in HDs and SLE patients with ...
(A) Representative dot plots showing the gating strategy. (B) Frequency of Tfh cells (CD4+CD45RA–CXCR5+FoxP3–), Tfr cells (CD4+CD45RA–CXCR5+FoxP3+), activated Tfh cells (aTfh cell, PD1+ICOS+), and activated Tfr cells (aTfr, PD1+ICOS+) in SLE patients (n = 19) and in HDs (n = 13). Statistical analysis was conducted using the 2-tailed Mann-Whitney U test. Error bars indicate the mean ± SEM. (C) Correlation between Tfh cell subsets, plasmablasts (CD27+CD38+CD19+), and SLEDAI. Statistical analysis was conducted using the Spearman’s rank correlation test.

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