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母胎界面处特殊白细胞-血管归巢相互作用的证据。

Evidence of specialized leukocyte-vascular homing interactions at the maternal/fetal interface.

作者信息

Kruse A, Merchant M J, Hallmann R, Butcher E C

机构信息

Department of Pathology and the Digestive Disease Center, Stanford University Medical School, USA.

出版信息

Eur J Immunol. 1999 Apr;29(4):1116-26. doi: 10.1002/(SICI)1521-4141(199904)29:04<1116::AID-IMMU1116>3.0.CO;2-4.

Abstract

In normal pregnancy, the maternal immune system fails to reject the fetus or the placenta as an allogeneic graft. We hypothesize that specialized mechanisms of leukocyte recruitment might limit access of circulating maternal immune cells to the maternal/fetal interface. During the critical period of initial trophoblast invasion there is an elegantly orchestrated progression of leukocyte homing events in the decidua basalis, associated with highly regulated expression of vascular addressins and segregation of specialized leukocyte subsets into well-defined decidual microdomains. Neutrophils are limited to the region of necrosis associated with enzymatic digestion at the leading edge of the invading trophoblast, where an almost linear array of maternal blood vessels displays the neutrophil ligand E-selectin. Cells with the phenotype of monocytes but expressing alpha4beta7 integrin are localized in the blood vessels of the specialized "vascular zone", which display the unusual combination of P-selectin (partially associated with platelets) and the alpha4beta7 ligand mucosal vascular addressin-1 (MAdCAM-1). Granulated metrial gland cells (alpha4+beta7-, probably alpha4beta1+) constitute a well-defined cluster positioned in the central decidua basalis around venules prominently expressing the alpha4beta1 ligand VCAM-1 (but not MAdCAM-1). T and B lymphocytes are rare. Our results suggest that selective mechanisms for regulating leukocyte access, associated with microdomain specialization within the decidua basalis, may play a fundamental role in immune regulation during the invasive period of placental development.

摘要

在正常妊娠过程中,母体免疫系统不会将胎儿或胎盘作为同种异体移植物加以排斥。我们推测,白细胞募集的特殊机制可能会限制循环中的母体免疫细胞进入母胎界面。在滋养层细胞最初侵入的关键时期,基蜕膜中白细胞归巢事件呈现出精心编排的进展过程,这与血管地址素的高度调控表达以及特定白细胞亚群分离至明确的蜕膜微区有关。中性粒细胞局限于与侵入性滋养层前沿酶消化相关的坏死区域,在该区域,几乎呈线性排列的母体血管表达中性粒细胞配体E-选择素。具有单核细胞表型但表达α4β7整合素的细胞定位于特殊“血管区”的血管中,这些血管呈现出P-选择素(部分与血小板相关)和α4β7配体黏膜血管地址素-1(MAdCAM-1)的异常组合。颗粒状子宫内膜腺细胞(α4+β7-,可能为α4β1+)构成一个明确的细胞簇,位于基蜕膜中央围绕着显著表达α4β1配体血管细胞黏附分子-1(VCAM-1,而非MAdCAM-1)的小静脉周围。T和B淋巴细胞很少见。我们的结果表明,与基蜕膜内微区特化相关的调节白细胞进入的选择性机制,可能在胎盘发育侵入期的免疫调节中发挥重要作用。

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