CD40配体和CD40:在猪母胎界面的表达、调控和功能。

IF 3.7 3区 生物学 Q1 DEVELOPMENTAL BIOLOGY
Reproduction Pub Date : 2025-02-10 Print Date: 2025-03-01 DOI:10.1530/REP-24-0396
Inkyu Yoo, Soohyung Lee, Yugyeong Cheon, Tae Sub Park, Hakhyun Ka
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引用次数: 0

摘要

为了成功地在猪体内建立和维持妊娠,多种因素必须在母体-受精卵界面共同作用,形成适合母体和受精卵的免疫环境。我们的转录组学研究表明,分化配体簇40 (CD40L)及其受体CD40在调节细胞和抗体介导的免疫中起重要作用,在妊娠早期子宫内膜中表达。然而,CD40L和CD40信号系统的作用尚不清楚。因此,我们确定了CD40L和CD40在猪母胎界面的表达、调控和功能。子宫内膜CD40L和CD40 mrna表达在妊娠第15天达到最高水平。CD40L蛋白在妊娠第15天主要定位于腔上皮细胞,而CD40蛋白在妊娠期间子宫内膜的腔上皮细胞、间质细胞和血管内皮细胞中均有发现。在妊娠早期,胎体表达CD40而不表达CD40L,而在妊娠中后期,绒毛膜尿囊组织表达CD40L和CD40。干扰素γ增加了子宫内膜外植体中CD40L和CD40的表达。CD40L增加了体外培养的猪子宫内膜内皮细胞(pENDO)的迁移,但没有增加增殖。此外,CD40L还影响pENDO细胞中血管生成、细胞粘附、趋化因子和免疫相关基因的表达。这些结果提示,CD40L-CD40系统可能通过调节着床期子宫内膜内皮细胞的功能,在猪的妊娠建立中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CD40 ligand and CD40: expression, regulation and function at the maternal-conceptus interface in pigs.

In brief: The CD40 ligand-CD40 signaling system expressed at the maternal-conceptus interface in pigs is involved in regulating maternal immunity by modifying endometrial endothelial cell function during early pregnancy. This paper reveals the role of CD40 ligand-CD40 signaling at the maternal-conceptus interface in pigs.

Abstract: To successfully establish and maintain pregnancy in pigs, a variety of factors must work together at the maternal-conceptus interface to form an immune environment appropriate for both the mother and the conceptus. Our transcriptomics study has shown that cluster of differentiation ligand 40 (CD40L) and its receptor CD40, which are known to play important roles in regulating cell- and antibody-mediated immunity, are expressed in the endometrium during early pregnancy. However, the roles of the CD40L and CD40 signaling system are not well understood. Therefore, we determined the expression, regulation and function of CD40L and CD40 at the maternal-conceptus interface in pigs. The endometrium expressed CD40L and CD40 mRNAs at the greatest levels on day 15 of pregnancy. The CD40L protein was localized predominantly to luminal epithelial cells on day 15 of pregnancy, and the CD40 protein was found in luminal epithelial, stromal and vascular endothelial cells in the endometrium during pregnancy. During early pregnancy, the conceptus expressed CD40 but not CD40L and chorioallantoic tissues during mid- to late pregnancy expressed both CD40L and CD40. Interferon-γ increased the expression of CD40L and CD40 in endometrial explants. CD40L increased the migration but not the proliferation of cultured porcine uterine endothelial (pENDO) cells in vitro. In addition, CD40L affected the expression of genes related to angiogenesis, cell adhesion, chemokines and immunity in pENDO cells. These results suggest that the CD40L-CD40 system might play an important role in the establishment of pregnancy in pigs by regulating endometrial endothelial cell function during the implantation period.

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来源期刊
Reproduction
Reproduction 生物-发育生物学
CiteScore
7.40
自引率
2.60%
发文量
199
审稿时长
4-8 weeks
期刊介绍: Reproduction is the official journal of the Society of Reproduction and Fertility (SRF). It was formed in 2001 when the Society merged its two journals, the Journal of Reproduction and Fertility and Reviews of Reproduction. Reproduction publishes original research articles and topical reviews on the subject of reproductive and developmental biology, and reproductive medicine. The journal will consider publication of high-quality meta-analyses; these should be submitted to the research papers category. The journal considers studies in humans and all animal species, and will publish clinical studies if they advance our understanding of the underlying causes and/or mechanisms of disease. Scientific excellence and broad interest to our readership are the most important criteria during the peer review process. The journal publishes articles that make a clear advance in the field, whether of mechanistic, descriptive or technical focus. Articles that substantiate new or controversial reports are welcomed if they are noteworthy and advance the field. Topics include, but are not limited to, reproductive immunology, reproductive toxicology, stem cells, environmental effects on reproductive potential and health (eg obesity), extracellular vesicles, fertility preservation and epigenetic effects on reproductive and developmental processes.
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