Maternal MicroRNA Profile Changes When LH Is Added to the Ovarian Stimulation Protocol: A Pilot Study.

IF 2.5 Q3 GENETICS & HEREDITY Epigenomes Pub Date : 2023-10-06 DOI:10.3390/epigenomes7040025
Fani Konstantinidou, Martina Placidi, Giovanna Di Emidio, Liborio Stuppia, Carla Tatone, Valentina Gatta, Paolo Giovanni Artini
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Abstract

While the use of follicle-stimulating hormone (FSH) in ovarian stimulation for in vitro fertilization (IVF) is an established practice, the use of luteinizing hormone (LH) remains debatable. MicroRNAs (miRNAs) are short, endogenous, non-coding transcripts that control a variety of cellular functions, such as gonadotrophin production and follicular development. The goal of this pilot study was to investigate whether the employment of recombinant LH (rLH) in ovarian stimulation protocols results in changes in the miRNA profiles in human oocytes. Patients were divided into two groups: seven received recombinant FSH (rFSH, 225 IU), and six received rFSH (150 IU) plus rLH (75 IU). MiRNA predesigned panels and real-time PCR technology were used to analyze the oocytes retrieved from the follicular ovarian retrieval. Among the miRNAs evaluated, a series of them evidenced upregulation or downregulation in their expression in the FSH plus LH group compared to the FSH group. Considering the results obtained from the functional and network analysis, the different maternal miRNA profiles in the two groups revealed a differential modulation of pathways involved in numerous biological functions. Overall, based on the pathways associated with most of these maternal miRNAs, the presence of LH may result in a different modulation of pathways regulating survival under the control of a Tp53-related mechanism. Interestingly, among the miRNAs differentially expressed in oocytes of the two groups, we have found miRNAs already investigated at ovarian, follicular, oocyte, and embryonic levels: hsa-miR-484, hsa-miR-222, hsa-miR-520d-5p, hsa-miRNA-17, hsa-miR-548, and hsa-miR-140. Thus, investigation into the role of these miRNAs in oocyte molecular pathways may help determine how LH affects oocyte competence and eventually leads to the clinical improvement of IVF.

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当LH被添加到卵巢刺激方案中时,母体微小RNA图谱的变化:一项初步研究。
虽然在体外受精(IVF)的卵巢刺激中使用卵泡刺激素(FSH)是一种既定的做法,但使用促黄体生成素(LH)仍然存在争议。微小RNA(miRNA)是一种短的内源性非编码转录物,控制多种细胞功能,如促性腺激素的产生和卵泡发育。这项初步研究的目的是调查在卵巢刺激方案中使用重组LH(rLH)是否会导致人类卵母细胞中miRNA谱的变化。患者分为两组:7组接受重组FSH(rFSH,225 IU),6组接受rFSH(150 IU)加rLH(75 IU)。MiRNA预先设计的面板和实时PCR技术用于分析从卵泡卵巢取出的卵母细胞。在评估的miRNA中,与FSH组相比,FSH加LH组的一系列miRNA的表达上调或下调。考虑到功能和网络分析的结果,两组中不同的母体miRNA图谱揭示了参与多种生物功能的途径的差异调节。总体而言,基于与大多数这些母体miRNA相关的途径,LH的存在可能导致在Tp53相关机制的控制下对调节存活的途径进行不同的调节。有趣的是,在这两组卵母细胞中差异表达的miRNA中,我们发现已经在卵巢、卵泡、卵母细胞和胚胎水平上研究了miRNA:hsa-miR-484、hsa-miR-222、hsa-miR-520d-5p、hsa-iRNA-17、hsa-micro-548和hsa-miR-140。因此,研究这些miRNA在卵母细胞分子通路中的作用可能有助于确定LH如何影响卵母细胞能力,并最终导致IVF的临床改进。
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来源期刊
Epigenomes
Epigenomes GENETICS & HEREDITY-
CiteScore
3.80
自引率
0.00%
发文量
38
审稿时长
11 weeks
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