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卵丘细胞中线粒体FIS1水平与人类卵裂期胚胎的形态学等级相关。

Mitochondrial FIS1 level in cumulus cells correlates with morphological grades of human cleavage-stage embryos.

作者信息

Sima Yizhen, Shi Sanbao, Min Zhunyuan, Chen Yuning, Lu Yongning, Sha Hongying, Liu Suying

机构信息

Reproductive Medicine Center of Zhongshan Hospital, Institutes of Brain Science, State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, Fudan University, Shanghai, China.

出版信息

J Assist Reprod Genet. 2025 Mar 17. doi: 10.1007/s10815-025-03431-7.

Abstract

PURPOSE

Advanced-age women have a lower good-quality embryo rate (GQER) compared to young women. However, GQER varies widely within the same age group, suggesting that factors beyond age influence embryo quality. Mitochondria regulate cellular metabolism through dynamic fission and fusion alterations. Specifically, cumulus cell (CC) mitochondria regulate not only the metabolism of CCs but also of adjacent oocytes. This study aims to investigate the relationship between CC mitochondrial dynamics and oocyte developmental potential post-fertilization.

METHODS

CCs were collected from 183 women aged 25-45 undergoing single sperm intracytoplasmic injection-embryo transfer treatments. Samples were stratified by age into young (< 35) and advanced age (≥ 35) groups. Each group was further subdivided into high and low subgroups based on day 3 GQER. Mitochondrial morphology, dynamics, fission-fusion gene expression, and mitochondrial functions were compared among groups and subgroups.

RESULTS

Consistent with the literature, data analysis from our laboratory revealed significant variances in GQER among individuals of the same age group. Morphological analysis suggested a negative correlation between GQER and mitochondrial length in CCs (P < 0.0001, r = - 0.38). Live-cell imaging showed that both fission and fusion frequencies of CC mitochondria in the advanced-age group were lower than those in the young group (P = 0.009, P = 0.01). Additionally, within the advanced-age group, CC mitochondria from the low GQER subgroup exhibited lower fission frequency and fission-fusion ratios compared to the high GQER subgroup (P = 0.04, P = 0.01). Consequently, GQER positively correlated with mitochondrial fission-fusion ratio in CCs (P = 0.01, r = 0.44). Notably, there were no significant differences in the expression of mitochondrial fusion-related proteins (OPA1, MFN1, and MFN2) between the advanced-age and young groups or among the subgroups. However, levels of fission proteins, including FIS1 and MFF, were significantly lower in the advanced-age group compared to the young group and in the low GQER subgroup compared to their high GQER counterparts. qPCR results further indicated that fis1 and mff mRNA levels in CCs were positively correlated with GQER (P < 0.0001, r = 0.55; P = 0.0025, r = 0.41). The CCs from the low GQER subgroup exhibit a higher level of mitochondrial dysfunction.

CONCLUSIONS

Mitochondrial morphology, fission-fusion balance, and fission-fusion gene expression in CCs influence early embryonic development, independent of age. Of these factors, the FIS1 level shows the most robust correlation with GQER.

摘要

目的

与年轻女性相比,高龄女性的优质胚胎率(GQER)较低。然而,同一年龄组内的GQER差异很大,这表明年龄以外的因素会影响胚胎质量。线粒体通过动态裂变和融合改变来调节细胞代谢。具体而言,卵丘细胞(CC)线粒体不仅调节CC的代谢,还调节相邻卵母细胞的代谢。本研究旨在探讨CC线粒体动力学与受精后卵母细胞发育潜能之间的关系。

方法

收集了183名年龄在25 - 45岁接受单精子卵胞浆内注射 - 胚胎移植治疗的女性的CC。样本按年龄分层为年轻(<35岁)和高龄(≥35岁)组。每组再根据第3天的GQER进一步细分为高和低亚组。比较各亚组之间的线粒体形态、动力学、裂变 - 融合基因表达和线粒体功能。

结果

与文献一致,我们实验室的数据分析显示同一年龄组个体之间的GQER存在显著差异。形态学分析表明,CC中线粒体长度与GQER呈负相关(P < 0.0001,r = -0.38)。活细胞成像显示,高龄组CC线粒体的裂变和融合频率均低于年轻组(P = 0.009,P = 0.01)。此外,在高龄组内,低GQER亚组的CC线粒体与高GQER亚组相比,裂变频率和裂变 - 融合比更低(P = 0.04,P = 0.01)。因此,GQER与CC中的线粒体裂变 - 融合比呈正相关(P = 0.01,r = 0.44)。值得注意的是,高龄组和年轻组之间或各亚组之间线粒体融合相关蛋白(OPA1、MFN1和MFN2)的表达没有显著差异。然而,包括FIS1和MFF在内的裂变蛋白水平在高龄组中显著低于年轻组,在低GQER亚组中显著低于其高GQER对应亚组。qPCR结果进一步表明,CC中fis1和mff mRNA水平与GQER呈正相关(P < 0.0001,r = 0.55;P = 0.0025,r = 0.41)。低GQER亚组的CC表现出线粒体功能障碍水平较高。

结论

CC中的线粒体形态、裂变 - 融合平衡和裂变 - 融合基因表达影响早期胚胎发育,与年龄无关。在这些因素中,FIS1水平与GQER的相关性最为显著。

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