Gene profiling the window of implantation: Microarray analyses from human and rodent models

Jennifer L. Herington , Yan Guo , Jeff Reese , Bibhash C. Paria
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引用次数: 16

Abstract

Poor uterine receptivity leads to implantation defects or failure. Identification of uterine molecules crucial to uterine receptivity and/or embryo implantation provides the opportunity to design a diagnostic screening toolkit for uterine receptivity or targeted drug discovery for treating implantation-based infertility. In this regard, gene-profiling studies performed in humans and rodents have identified numerous genes involved in the transcriptional regulation of uterine receptivity and embryo implantation. In this article, we compared available uterine microarray datasets collected during the time of uterine receptivity and implantation in humans, mice and hamsters to uncover conserved gene sets. We also compared the transcriptome signature of women with unexplained infertility (UIF) and recurrent implantation failure (RIF) to gain insight into genes potentially dysregulated during endometrial receptivity or embryo implantation. Among numerous differentially expressed genes, few were revealed that might have molecular diagnostic screening potential for identifying the uterine receptive state during the time of implantation. Finally, functional annotation of gene sets uncovered altered uterine apoptosis or cell adhesion pathways in women with UIF and RIF, respectively. These conserved or divergent gene sets provide insights into the uterine receptive state for supporting blastocyst implantation.

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植入窗口的基因分析:来自人类和啮齿动物模型的微阵列分析
子宫容受性差导致着床缺陷或失败。鉴定对子宫容受性和/或胚胎着床至关重要的子宫分子,为设计子宫容受性的诊断筛查工具或发现治疗着床性不孕症的靶向药物提供了机会。在这方面,在人类和啮齿动物中进行的基因谱研究已经确定了许多参与子宫接受性和胚胎着床转录调控的基因。在本文中,我们比较了在人类、小鼠和仓鼠的子宫容受期和着床期收集的子宫微阵列数据集,以揭示保守的基因集。我们还比较了不明原因不孕(UIF)和复发性着床失败(RIF)女性的转录组特征,以深入了解子宫内膜接受性或胚胎着床过程中潜在的基因失调。在众多的差异表达基因中,很少发现可能具有分子诊断筛选潜力来识别着床时子宫的接受状态。最后,基因组的功能注释分别揭示了UIF和RIF女性子宫凋亡或细胞粘附途径的改变。这些保守的或分化的基因组提供了对子宫接受状态支持囊胚着床的见解。
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