Role of uterine immune cells in early pregnancy in pigs.

H. Engelhardt, B. Croy, Gordon J. King
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引用次数: 47

Abstract

The immune system discriminates 'self' from 'non-self', and eliminates that which it determines to be non-self. Mammalian pregnancy appears to represent a failure of self-non-self discrimination, yet it is a highly successful reproductive strategy. We present evidence that the immune system of the female pig responds to the challenges of both mating and the presence of conceptuses. Mating induces an influx of inflammatory leukocytes into the endometrial stroma and uterine lumen. This response, while partially under endocrine control, is amplified by as yet unidentified factors in seminal plasma. In addition to preventing microbial infection, this mating-induced immune response may enhance reproductive performance. During the first month of pregnancy when intimate contact between maternal and fetal tissues is being established, the number of uterine lymphocytes decrease in the luminal epithelium and increase in the endometrial stroma at sites of conceptus attachment. The majority of these lymphocytes express the CD2 and CD8 surface markers, consistent with either T or natural killer (NK) cell lineage. Dispersed endometrial cells obtained during early gestation exhibit a pregnancy-specific increase in NK-like lytic activity. Our ongoing efforts to determine whether these NK-like lymphocytes are the ones that localize to sites of conceptus attachment are discussed. We speculate on how the reactions of pig uterine leukocytes to seminal plasma and conceptuses might contribute to successful pregnancy.
子宫免疫细胞在猪妊娠早期的作用。
免疫系统区分“自我”和“非自我”,并清除它所认定的非自我。哺乳动物怀孕似乎代表了自我非自我歧视的失败,但这是一种非常成功的生殖策略。我们提出的证据表明,母猪的免疫系统对交配和受孕的挑战都有反应。交配诱导炎性白细胞涌入子宫内膜间质和子宫腔。这种反应,虽然部分受内分泌控制,但被精浆中尚未确定的因素放大。除了预防微生物感染外,这种交配诱导的免疫反应还可以提高生殖性能。在怀孕的第一个月,当母体和胎儿组织之间的亲密接触正在建立时,子宫淋巴细胞的数量在子宫腔上皮中减少,在子宫内膜基质中增加。这些淋巴细胞中的大多数表达CD2和CD8表面标记物,与T或自然杀伤(NK)细胞谱系一致。在妊娠早期获得的分散的子宫内膜细胞表现出妊娠特异性的nk样溶解活性增加。我们正在进行的努力,以确定这些nk样淋巴细胞是否定位于胚胎附着部位的淋巴细胞。我们推测猪子宫白细胞对精浆和胚胎的反应可能有助于成功妊娠。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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