TY - JOUR
T1 - CD25 signaling regulates the function and stability of peripheral Foxp3+ regulatory T cells derived from the spleen and lymph nodes of mice
AU - Wang, Kunpeng
AU - Gu, Jian
AU - Ni, Xuhao
AU - Ding, Zheng
AU - Wang, Qi
AU - Zhou, Haoming
AU - Zheng, Song Guo
AU - Li, Bin
AU - Lu, Ling
N1 - Funding Information:
This work was supported by the National 863 Project ( 2015AA020932 ), the National Natural Science Foundation of China ( 81100270 , 81571564 , 31370863 and 81330072 ), the Natural Science Foundation of Jiangsu Province ( BK20131024 ), Jiangsu Province's Outstanding Medical Academic key program ( RC2016 to Ling Lu), and the Six Talent Peaks Project of Jiangsu Province ( 2011-ws-106 ).
Publisher Copyright:
© 2016 Elsevier Ltd.
PY - 2016/8/1
Y1 - 2016/8/1
N2 - Regulatory T cells (Tregs) play a critical role in sustaining immune tolerance and maintaining immune balance to alloantigen after transplatation. However, the functions of peripheral Tregs in different organs have not been fully characterized. Here, we showed that spleen-derived Tregs exhibited higher expression of Foxp3, greater suppressive capacity, and lower levels of IL-17A secretion than lymph node-derived Tregs in vitro in the presence or absence of inflammatory cytokines, such as IL-6. We found a higher percentage of CD25bright Tregs among spleen-derived Tregs than among lymph node-derived Tregs. Additionally, in vivo experiments demonstrated that adoptive transfer of spleen-derived Tregs, but not lymph node-derived Tregs, alleviated ischemia-reperfusion injury. These results reveal novel functions of Tregs derived from peripheral organs. In particular, spleen-derived Tregs, primarily consisting of CD25bright cells, may provide a more significant contribution to the suppression of immune-mediated autoimmune and inflammatory disease.
AB - Regulatory T cells (Tregs) play a critical role in sustaining immune tolerance and maintaining immune balance to alloantigen after transplatation. However, the functions of peripheral Tregs in different organs have not been fully characterized. Here, we showed that spleen-derived Tregs exhibited higher expression of Foxp3, greater suppressive capacity, and lower levels of IL-17A secretion than lymph node-derived Tregs in vitro in the presence or absence of inflammatory cytokines, such as IL-6. We found a higher percentage of CD25bright Tregs among spleen-derived Tregs than among lymph node-derived Tregs. Additionally, in vivo experiments demonstrated that adoptive transfer of spleen-derived Tregs, but not lymph node-derived Tregs, alleviated ischemia-reperfusion injury. These results reveal novel functions of Tregs derived from peripheral organs. In particular, spleen-derived Tregs, primarily consisting of CD25bright cells, may provide a more significant contribution to the suppression of immune-mediated autoimmune and inflammatory disease.
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U2 - 10.1016/j.molimm.2016.06.007
DO - 10.1016/j.molimm.2016.06.007
M3 - Article
C2 - 27344615
AN - SCOPUS:84975478089
SN - 0161-5890
VL - 76
SP - 35
EP - 40
JO - Molecular Immunology
JF - Molecular Immunology
ER -