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RANK links thymic regulatory T cells to fetal loss and gestational diabetes in pregnancy

机译:等级将胸腺调节T细胞与妊娠期胎儿损失和妊娠期糖尿病联系起来

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摘要

Successful pregnancies rely on adaptations within the mother(1), including marked changes within the immune system(2). It has long been known that the thymus, the central lymphoid organ, changes markedly during pregnancy(3). However, the molecular basis and importance of this process remain largely obscure. Here we show that the osteoclast differentiation receptor RANK(4,5) couples female sex hormones to the rewiring of the thymus during pregnancy. Genetic deletion of Rank (also known as Tnfrsf11a) in thymic epithelial cells results in impaired thymic involution and blunted expansion of natural regulatory T (T-reg) cells in pregnant female mice. Sex hormones, in particular progesterone, drive the development of thymic T-reg cells through RANK in a manner that depends on AIRE(+) medullary thymic epithelial cells. The depletion of Rankin the mouse thymic epithelium results in reduced accumulation of natural T-reg cells in the placenta, and an increase in the number of miscarriages. Thymic deletion of Rank also results in impaired accumulation of T-reg cells in visceral adipose tissue, and is associated with enlarged adipocyte size, tissue inflammation, enhanced maternal glucose intolerance, fetal macrosomia, and a long-lasting transgenerational alteration in glucose homeostasis, which are all key hallmarks of gestational diabetes. Transplantation of T reg cells rescued fetal loss, maternal glucose intolerance and fetal macrosomia. In human pregnancies, we found that gestational diabetes also correlates with a reduced number of T-reg cells in the placenta. Our findings show that RANK promotes the hormone-mediated development of thymic T-reg cells during pregnancy, and expand the functional role of maternal T-reg cells to the development of gestational diabetes and the transgenerational metabolic rewiring of glucose homeostasis.
机译:成功的怀孕依赖于母亲(1)内的适应,包括免疫系统内的显着变化(2)。众所周知,妊娠期胸腺,中央淋巴管器官,在怀孕期间显着变化(3)。然而,该过程的分子基础和重要性仍然在很大程度上是模糊的。在这里,我们表明,骨酸分化受体等级(4,5)将女性性激素致其怀孕期间的胸腺复再灌注。在胸腺上皮细胞中的秩序(也称为TNFRSF11a)的遗传缺失导致胸腺抑制患者的抑制障碍,并且在怀孕的雌性小鼠中钝化了天然调节性T(T-REG)细胞的膨胀。性激素,特别是孕酮,以依赖于Aire(+)髓质胸腺上皮细胞的方式,通过等级驱动胸腺T-reg细胞的发育。小鼠胸腺上皮的RANKIN的耗尽导致胎盘中天然T-reg细胞的积累减少,并且流产的数量增加。等级的胸腺缺失还导致内脏脂肪组织中T-reg细胞的积累受损,并且与扩大的脂肪细胞大小,组织炎症,增强的母体葡萄糖不耐受,胎儿麦克风和葡萄糖稳定的延长的转基因改变有关是妊娠期糖尿病的所有关键标志。 T reg细胞移植拯救胎儿损失,母体葡萄糖不耐受和胎儿麦克风。在人类怀孕中,我们发现妊娠期糖尿病也与胎盘中减少的T-reg细胞数相关。我们的研究结果表明,该等级促进了妊娠期间肾上腺T-REG细胞的激素介导的发育,并扩大了母体T-REG细胞的功能作用,并对妊娠期糖尿病的发育的开发和葡萄糖稳态的转基因代谢再挤出。

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  • 来源
    《Nature》 |2021年第7842期|442-447|共6页
  • 作者单位

    Austrian Acad Sci IMBA Inst Mol Biotechnol Vienna Austria|Karolinska Inst Dept Med Solna Stockholm Sweden|Karolinska Univ Hosp Stockholm Sweden;

    Austrian Acad Sci IMBA Inst Mol Biotechnol Vienna Austria;

    Austrian Acad Sci IMBA Inst Mol Biotechnol Vienna Austria;

    Austrian Acad Sci IMBA Inst Mol Biotechnol Vienna Austria;

    Austrian Acad Sci IMBA Inst Mol Biotechnol Vienna Austria;

    Med Univ Vienna Div Endocrinol & Metab Dept Med 3 Gender Med Unit Vienna Austria;

    Austrian Acad Sci CeMM Res Ctr Mol Med Vienna Austria;

    Med Univ Vienna Div Obstet & Fetomaternal Med Dept Obstet & Gynecol Vienna Austria;

    Austrian Acad Sci IMBA Inst Mol Biotechnol Vienna Austria;

    Austrian Acad Sci IMBA Inst Mol Biotechnol Vienna Austria;

    Austrian Acad Sci IMBA Inst Mol Biotechnol Vienna Austria|Univ Nacl San Martin Inst Invest Biotecnol Dr Rodolfo A Ugalde IIB UNSAM IIBIO CONICET Buenos Aires DF Argentina;

    Univ Birmingham Inst Immunol & Immunotherapy Inst Biomed Res Med Sch Birmingham W Midlands England;

    Austrian Acad Sci IMBA Inst Mol Biotechnol Vienna Austria;

    Med Univ Vienna Dept Pathol Vienna Austria;

    Austrian Acad Sci CeMM Res Ctr Mol Med Vienna Austria;

    Austrian Acad Sci CeMM Res Ctr Mol Med Vienna Austria|Med Univ Vienna Dept Lab Med Vienna Austria;

    Med Univ Vienna Dept Pathol Vienna Austria|Med Univ Vienna Div Expt & Translat Pathol Dept Pathol Vienna Austria|Ctr Biomarker Res Med CBmed Graz Austria|Univ Vet Med Vienna Unit Lab Anim Pathol Vienna Austria|Med Univ Vienna Christian Doppler Lab Appl Metabol CDL Vienna Austria;

    Univ Basel Dept Biomed Paediat Immunol Basel Switzerland|Univ Childrens Hosp Basel Basel Switzerland|Univ Oxford Dept Paediat Oxford England|Univ Oxford Weatherall Inst Mol Med Oxford England|Swiss Fed Inst Technol Dept Biosyst Sci & Engn Basel Switzerland;

    Univ Birmingham Inst Immunol & Immunotherapy Inst Biomed Res Med Sch Birmingham W Midlands England;

    Med Univ Vienna Div Endocrinol & Metab Dept Med 3 Gender Med Unit Vienna Austria|Austrian Inst Gender Med Gars Austria;

    Austrian Acad Sci IMBA Inst Mol Biotechnol Vienna Austria|Univ British Columbia Life Sci Inst Dept Med Genet Vancouver BC Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 23:00:51

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