4.5 Article

Myeloid-derived suppressor cells are essential for maintaining feto-maternal immunotolerance via STAT3 signaling in mice

期刊

JOURNAL OF LEUKOCYTE BIOLOGY
卷 100, 期 3, 页码 499-511

出版社

FEDERATION AMER SOC EXP BIOL
DOI: 10.1189/jlb.1A1015-481RR

关键词

pregnancy; MDSC; progesterone

资金

  1. National Key Basic Research Program of China [2012CB524900]
  2. Guangdong Innovative Research Team Program [2009010058]
  3. Guangdong Province Universities and Colleges Pearl River Scholar Funded Scheme (GDUPS)
  4. Program for the 12th Five-year Plan [2012ZX10001003]
  5. National Natural Science Foundation of China [81072397, 31270921, 301500740]
  6. Natural Science Foundation of Guangdong [S2011020006072]
  7. Fundamental Research Funds for the Central Universities
  8. Provincial Talents Cultivated by the Thousand-Hundred-Ten program of Guangdong Province
  9. 111 Project [B12003]

向作者/读者索取更多资源

MDSCs contribute to maintaining feto-maternal tolerance; STAT3 signaling mediates the effects of P4 on MDSCs in pregnancy. Maternal immune system tolerance to the semiallogeneic fetus is essential for a successful pregnancy; however, the mechanisms underlying this immunotolerance have not been fully elucidated. Here, we demonstrate that myeloid-derived suppressor cells play an important role in maintaining feto-maternal tolerance. A significant expansion of granulocytic myeloid-derived suppressor cells was observed in multiple immune organs and decidual tissues from pregnant mice. Pregnancy-derived granulocytic myeloid-derived suppressor cells suppressed T cell responses in a reactive oxygen species-dependent manner and required direct cell-cell contact. Mechanistic studies showed that progesterone facilitated differentiation and activation of granulocytic myeloid-derived suppressor cells, mediated through STAT3 signaling. The STAT3 inhibitor JSI-124 and a specific short hairpin RNA completely abrogated the effects of progesterone on granulocytic myeloid-derived suppressor cells. More importantly, granulocytic myeloid-derived suppressor cell depletion dramatically enhanced the abortion rate in normal pregnant mice, whereas adoptive transfer of granulocytic myeloid-derived suppressor cells clearly reduced the abortion rate in the CBA/J X DBA/2J mouse model of spontaneous abortion. These observations collectively demonstrate that granulocytic myeloid-derived suppressor cells play an essential role in the maintenance of fetal immunotolerance in mice. Furthermore, our study supports the notion that in addition to their well-recognized roles under pathologic conditions, myeloid-derived suppressor cells perform important functions under certain physiologic circumstances.

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