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人卵母细胞中透明带基因mRNA的表达与卵母细胞成熟度、透明带内层延迟及受精能力有关。

Zona pellucida gene mRNA expression in human oocytes is related to oocyte maturity, zona inner layer retardance and fertilization competence.

作者信息

Canosa S, Adriaenssens T, Coucke W, Dalmasso P, Revelli A, Benedetto C, Smitz J

机构信息

Chair Gynecology and Obstetrics 1, Physiopathology of Reproduction and IVF Unit, University Department of Surgical Sciences, S. Anna Hospital, Via Ventimiglia 3, 10126 Torino, Italy.

Follicle Biology Laboratory, Vrije Universiteit Brussel (VUB), Laarbeeklaan 101, 1090 Brussels, Belgium.

出版信息

Mol Hum Reprod. 2017 May 1;23(5):292-303. doi: 10.1093/molehr/gax008.

Abstract

STUDY QUESTION

Do the mRNA expression levels of zona pellucida (ZP) genes, ZP1, 2, 3 and 4 in oocyte and cumulus cells (CC) reveal relevant information on the oocyte?

SUMMARY ANSWER

The ZP mRNA expression in human oocytes is related to oocyte maturity, zona inner layer (IL) retardance and fertilization capacity.

WHAT IS KNOWN ALREADY

ZP structure and birefringence provide useful information on oocyte cytoplasmic maturation, developmental competence for embryonic growth, blastocyst formation and pregnancy. In order to understand the molecular basis of morphological changes in the ZP, in the current study, the polarized light microscopy (PLM) approach was combined with analysis of the expression of the genes encoding ZP1, 2, 3 and 4, both in the oocytes and in the surrounding CC.

STUDY DESIGN, SIZE, DURATION: This is a retrospective study comprising 98 supernumerary human cumulus oocyte complexes (COC) [80 Metaphase II (MII), 10 Metaphase I (MI) and 8 germinal vesicle (GV)] obtained from 39 patients (median age 33.4 years, range 22-42) after controlled ovarian stimulation.

PARTICIPANTS/MATERIALS, SETTING, METHODS: Single oocytes and their corresponding CC were analysed. Oocytes were examined using PLM, and quantitative RT-PCR was performed for ZP1, 2, 3 and 4 in these individual oocytes and their CC. Ephrin-B2 (EFNB2) mRNA was measured in CC as a control. Presence of ZP3 protein in CC and oocytes was investigated using immunocytochemistry. Data were analysed using one-parametric and multivariate analysis and were corrected for the potential impact of patient and cycle characteristics.

MAIN RESULTS AND THE ROLE OF CHANCE

Oocytes contained ZP1/2/3 and 4 mRNA while in CC only ZP3 was quantifiable. Also ZP3 protein was detected in human CC. When comparing mature (MII) and immature oocytes (MI/GV) or their corresponding CC, ZP1/2 and 4 expression was lower in mature oocytes compared to the expression in immature oocytes (all P < 0.05) and ZP3 expression was lower in the CC of mature oocytes compared to the expression in CC of immature oocytes (P < 0.05). This coincided with a significantly smaller IL-ZP area and thickness in mature oocytes than in immature oocytes (all P < 0.05). In mature oocytes, IL-ZP retardance was significantly correlated with the expression of all four ZP mRNAs (all P < 0.05). The oocyte ZP3 expression was the main predictor of the fertilization capacity, next to IL-retardance and IL-thickness. Using stepwise regression analysis, IL-thickness combined with EFNB2 expression in CC and the patient's ovarian response resulted in a noninvasive oocyte fertilization prediction model.

LARGE SCALE DATA

Not applicable.

LIMITATIONS, REASONS FOR CAUTION: This is a retrospective study and the relation of oocyte mRNA levels to fertilization capacity is indirect as oocyte gene expression analysis required lysis of the oocyte.

WIDER IMPLICATIONS OF THE FINDINGS

Overall relations between PLM observations, mRNA expression changes and intrinsic oocyte competence were successfully documented. As such PLM and CC gene expression are confirmed as valuable noninvasive techniques to evaluate oocyte competence.

STUDY FUNDING/COMPETING INTEREST(S): This study was funded by University of Torino, Italy, WFWG UZ-Brussel and Agentschap voor Innovatie door Wetenschap en Technologie IWT 110680, Belgium. All authors declare that their participation in the study did not involve actual or potential conflicts of interests.

摘要

研究问题

卵母细胞和卵丘细胞(CC)中透明带(ZP)基因ZP1、2、3和4的mRNA表达水平是否能揭示有关卵母细胞的相关信息?

简要回答

人卵母细胞中的ZP mRNA表达与卵母细胞成熟度、透明带内层(IL)延迟和受精能力有关。

已知信息

ZP结构和双折射为卵母细胞细胞质成熟、胚胎生长发育能力、囊胚形成和妊娠提供了有用信息。为了了解ZP形态变化的分子基础,在本研究中,将偏光显微镜(PLM)方法与卵母细胞及其周围CC中编码ZP1、2、3和4的基因表达分析相结合。

研究设计、规模、持续时间:这是一项回顾性研究,包括从39例患者(中位年龄33.4岁,范围22 - 42岁)经控制性卵巢刺激后获得的98个多余的人卵丘卵母细胞复合体(COC)[80个中期II(MII)、10个中期I(MI)和8个生发泡(GV)]。

参与者/材料、设置、方法:对单个卵母细胞及其相应的CC进行分析。使用PLM检查卵母细胞,并对这些单个卵母细胞及其CC中的ZP1、2、3和4进行定量RT-PCR。在CC中测量Ephrin-B2(EFNB2)mRNA作为对照。使用免疫细胞化学研究CC和卵母细胞中ZP3蛋白的存在。使用单参数和多变量分析对数据进行分析,并对患者和周期特征的潜在影响进行校正。

主要结果及机遇的作用

卵母细胞含有ZP1/2/3和4 mRNA,而在CC中仅可定量检测到ZP3。在人CC中也检测到了ZP3蛋白。当比较成熟(MII)和未成熟卵母细胞(MI/GV)或其相应的CC时,成熟卵母细胞中ZP1/2和4的表达低于未成熟卵母细胞中的表达(所有P < 0.05),成熟卵母细胞CC中ZP3的表达低于未成熟卵母细胞CC中的表达(P < 0.05)。这与成熟卵母细胞中IL-ZP面积和厚度明显小于未成熟卵母细胞一致(所有P < 0.05)。在成熟卵母细胞中,IL-ZP延迟与所有四种ZP mRNA的表达显著相关(所有P < 0.05)。卵母细胞ZP3表达是受精能力的主要预测指标,仅次于IL延迟和IL厚度。使用逐步回归分析,IL厚度与CC中EFNB2表达及患者的卵巢反应相结合,得出了一个无创的卵母细胞受精预测模型。

大规模数据

不适用。

局限性、谨慎原因:这是一项回顾性研究,卵母细胞mRNA水平与受精能力的关系是间接的,因为卵母细胞基因表达分析需要裂解卵母细胞。

研究结果的更广泛影响

成功记录了PLM观察结果、mRNA表达变化与卵母细胞内在能力之间的总体关系。因此,PLM和CC基因表达被确认为评估卵母细胞能力的有价值的无创技术。

研究资金/利益冲突:本研究由意大利都灵大学、WFWG UZ - Brussel和比利时科学技术创新局IWT 110680资助。所有作者声明他们参与本研究不涉及实际或潜在的利益冲突。

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