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Nox2-deficient Tregs improve heart transplant outcomes via their increased graft recruitment and enhanced potency
Silvia C. Trevelin, Anna Zampetaki, Greta Sawyer, Aleksandar Ivetic, Alison C. Brewer, Lesley Ann Smyth, Federica Marelli-Berg, Robert Köchl, Robert I. Lechler, Ajay M. Shah, Giovanna Lombardi
Silvia C. Trevelin, Anna Zampetaki, Greta Sawyer, Aleksandar Ivetic, Alison C. Brewer, Lesley Ann Smyth, Federica Marelli-Berg, Robert Köchl, Robert I. Lechler, Ajay M. Shah, Giovanna Lombardi
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Research Article Cardiology Immunology

Nox2-deficient Tregs improve heart transplant outcomes via their increased graft recruitment and enhanced potency

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Abstract

Nox2 is a ROS-generating enzyme, deficiency of which increases suppression by Tregs in vitro and in an in vivo model of cardiac remodeling. As Tregs have emerged as a candidate therapy in autoimmunity and transplantation, we hypothesized that Nox2 deficiency in Tregs in recipient mice may improve outcomes in a heart transplant model. We generated a potentially novel B6129 mouse model with Treg-targeted Nox2 deletion (Nox2fl/flFoxP3Cre+ mice) and transplanted with hearts from CB6F1 donors. As compared with those of littermate controls, Nox2fl/flFoxP3Cre+ mice had lower plasma levels of alloantibodies and troponin-I, reduced levels of IFN-γ in heart allograft homogenates, and diminished cardiomyocyte necrosis and allograft fibrosis. Single-cell analyses of allografts revealed higher absolute numbers of Tregs and lower CD8+ T cell infiltration in Nox2-deficient recipients compared with Nox2-replete mice. Mechanistically, in addition to a greater suppression of CD8+CD25– T effector cell proliferation and IFN-γ production, Nox2-deficient Tregs expressed higher levels of CCR4 and CCR8, driving cell migration to allografts; this was associated with increased expression of miR-214-3p. These data indicate that Nox2 deletion in Tregs enhances their suppressive ability and migration to heart allografts. Therefore, Nox2 inhibition in Tregs may be a useful approach to improve their therapeutic efficacy.

Authors

Silvia C. Trevelin, Anna Zampetaki, Greta Sawyer, Aleksandar Ivetic, Alison C. Brewer, Lesley Ann Smyth, Federica Marelli-Berg, Robert Köchl, Robert I. Lechler, Ajay M. Shah, Giovanna Lombardi

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Figure 3

Nox2-deficient Tregs express higher levels of CCR4 and CCR8 than WT Tregs driving migration into heart allografts.

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Nox2-deficient Tregs express higher levels of CCR4 and CCR8 than WT Treg...
Tregs were purified from spleens and lymph nodes of Nox2-deficient Tregs (Nox2–/–) and WT mice and assessed for (A) mRNA levels of chemokine receptors (n = 12); (B and C) CCR4 and CCR8 protein levels by flow cytometry (n = 6); (D) chemotaxis in vitro toward CCL1 and CCL22; and (E and F) actin polymerization stimulated by CCL1 and CCL22. Some cells were incubated with Ly294002 (5 μM). Full minus one (FMO) antibody was used as a negative control. Graphs and images represent 1 of 3 independent experiments. Scale bar: 32 μm. (G, H, and K) WT and Nox2–/– Tregs were stained with different color cell tracers and tested for infiltration (after adoptive transfer) into CB6F1 hearts transplanted in C57BL/6 recipients (n = 4) (G and H) or adherence on cardiac ECs (K). (I and J) In vitro activation and binding of ICAM-1 in Tregs. Histograms and mean data represent 1 of 2 independent experiments. Data are shown as mean ± SEM. *P < 0.05 for indicated comparisons, Mann-Whitney 2-tailed t test in C, H, and K; Kruskal-Wallis followed by Dunn’s post test in D and E; and 2-way ANOVA followed by Bonferroni’s post test in J.

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