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Protective role of tissue-resident Tregs in a murine model of beryllium-induced disease
Shaikh M. Atif, Douglas G. Mack, Allison K. Martin, Andrew P. Fontenot
Shaikh M. Atif, Douglas G. Mack, Allison K. Martin, Andrew P. Fontenot
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Research Article Pulmonology

Protective role of tissue-resident Tregs in a murine model of beryllium-induced disease

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Abstract

CD4+ T cells drive the immunopathogenesis of chronic beryllium disease (CBD), and their recruitment to the lung heralds the onset of granulomatous inflammation. We have shown that CD4+ Tregs control granuloma formation in an HLA-DP2 Tg model of CBD. In these mice, beryllium oxide (BeO) exposure resulted in the accumulation of 3 distinct CD4+ T cell subsets in the lung, with the majority of tissue-resident memory cells expressing FoxP3. The amount of Be regulated the number of total and antigen-specific CD4+ T cells and Tregs in the lungs of HLA-DP2 Tg mice. Depletion of Tregs increased the number of IFN-γ–producing CD4+ T cells and enhanced lung injury, while mice treated with IL-2/αIL-2 complexes had increased Tregs and reduced inflammation and Be-responsive T cells in the lung. BeO-experienced resident Tregs suppressed anti-CD3–induced proliferation of CD4+ T cells in a contact-dependent manner. CTLA-4 and ICOS blockade, as well as the addition of LPS to BeO-exposed mice, increased the effector T cell (Teff)/Treg ratio and enhanced lung injury. Collectively, these data show that the protective role of tissue-resident Tregs is dependent on quantity of Be exposure and is overcome by blocking immune regulatory molecules or additional environmental insults.

Authors

Shaikh M. Atif, Douglas G. Mack, Allison K. Martin, Andrew P. Fontenot

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Figure 5

Depletion of Tregs in HLA-DP2-FoxP3-DTR Tg mice alters the Teff/Treg ratio and the number of IFN-γ–secreting T cells in the lung.

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Depletion of Tregs in HLA-DP2-FoxP3-DTR  Tg mice alters the Teff/Treg ra...
(A and B) Number of CD4+ T cells (A) and effector CD44+CD4+ T cells (B) in the lungs on day 21 in HLA-DP2 Tg and HLA-DP2-FoxP3-DTR Tg mice sensitized and boosted with 7 (7×) doses of BeO on days 0, 1, 2, 14, 15, 18, and 19, and treated with 1 μg of diphtheria toxin (DT) on days 18 and 19 is shown. (C and D) Representative contour plots (C) and the cumulative frequency (D) of CD25+FoxP3+ Tregs on day 21 in the lungs of HLA-DP2 Tg (left contour plot) and HLA-DP2-FoxP3-DTR Tg mice (right contour plot) after DT treatment. (E) Ratio of CD44+ Teffs/CD25+FoxP3+ Tregs in the lungs of HLA-DP2 Tg and HLA-DP2-FoxP3-DTR Tg mice exposed with multiple doses of BeO and analyzed at day 21. (F) IFN-γ secretion by CD4+ T cells purified from the lungs of HLA-DP2 Tg and HLA-DP2-FoxP3-DTR Tg mice exposed to multiple doses of BeO, harvested at day 21, and stimulated with BeSO4 (100 μM) in the presence of irradiated naive splenocytes for 24 hours. Data (mean ± SEM) are representative of 3 independent experiments (4–5 mice per group). Significance was determined by Mann-Whitney U test. *P < 0.05.

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