Suppr超能文献

控制性卵巢刺激会导致子宫内膜功能性基因组延迟,具有潜在的临床意义。

Controlled ovarian stimulation induces a functional genomic delay of the endometrium with potential clinical implications.

作者信息

Horcajadas José A, Mínguez Pablo, Dopazo Joaquín, Esteban Francisco J, Domínguez Francisco, Giudice Linda C, Pellicer Antonio, Simón Carlos

机构信息

Fundación IVI-Instituto Universitario IVI-Universidad de Valencia, Valencia, Spain.

出版信息

J Clin Endocrinol Metab. 2008 Nov;93(11):4500-10. doi: 10.1210/jc.2008-0588. Epub 2008 Aug 12.

Abstract

CONTEXT

Controlled ovarian stimulation induces morphological, biochemical, and functional genomic modifications of the human endometrium during the window of implantation.

OBJECTIVE

Our objective was to compare the gene expression profile of the human endometrium in natural vs. controlled ovarian stimulation cycles throughout the early-mid secretory transition using microarray technology.

METHOD

Microarray data from 49 endometrial biopsies obtained from LH+1 to LH+9 (n=25) in natural cycles and from human chorionic gonadotropin (hCG) +1 to hCG+9 in controlled ovarian stimulation cycles (n=24) were analyzed using different methods, such as clustering, profiling of biological processes, and selection of differentially expressed genes, as implemented in Gene Expression Pattern Analysis Suite and Babelomics programs.

RESULTS

Endometria from natural cycles followed different genomic patterns compared with controlled ovarian stimulation cycles in the transition from the pre-receptive (days LH/hCG+1 until LH/hCG+5) to the receptive phase (day LH+7/hCG+7). Specifically, we have demonstrated the existence of a 2-d delay in the activation/repression of two clusters composed by 218 and 133 genes, respectively, on day hCG+7 vs. LH+7. Many of these delayed genes belong to the class window of implantation genes affecting basic biological processes in the receptive endometrium.

CONCLUSIONS

These results demonstrate that gene expression profiling of the endometrium is different between natural and controlled ovarian stimulation cycles in the receptive phase. Identification of these differentially regulated genes can be used to understand the different developmental profiles of receptive endometrium during controlled ovarian stimulation and to search for the best controlled ovarian stimulation treatment in terms of minimal endometrial impact.

摘要

背景

在着床窗口期,控制性卵巢刺激会诱导人子宫内膜发生形态、生化和功能基因组学改变。

目的

我们的目的是使用微阵列技术比较自然周期与控制性卵巢刺激周期中,人子宫内膜在早-中分泌期转换过程中的基因表达谱。

方法

对49份子宫内膜活检样本的微阵列数据进行分析,这些样本分别来自自然周期中LH+1至LH+9阶段(n=25)以及控制性卵巢刺激周期中从人绒毛膜促性腺激素(hCG)+1至hCG+9阶段(n=24),采用不同方法进行分析,如聚类分析、生物学过程分析以及差异表达基因的筛选,这些分析通过基因表达模式分析套件和Babelomics程序实现。

结果

在从非容受期(LH/hCG+1天至LH/hCG+5天)向容受期(LH+7/hCG+7天)的转换过程中,自然周期的子宫内膜与控制性卵巢刺激周期的子宫内膜呈现不同的基因组模式。具体而言,我们已证明在hCG+7天与LH+7天相比,分别由218个和133个基因组成的两个聚类的激活/抑制存在2天的延迟。这些延迟基因中有许多属于着床窗口期基因类别,影响容受性子宫内膜中的基本生物学过程。

结论

这些结果表明,在容受期,自然周期和控制性卵巢刺激周期中子宫内膜的基因表达谱存在差异。鉴定这些差异调节基因可用于理解控制性卵巢刺激过程中容受性子宫内膜的不同发育情况,并寻找对子宫内膜影响最小的最佳控制性卵巢刺激治疗方案。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验