利用延时监测研究按线粒体拷贝数分层的活检囊胚的发育特征。

IF 4.2 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM
Chun-I Lee, Ching-Ya Su, Hsiu-Hui Chen, Chun-Chia Huang, En-Hui Cheng, Tsung-Hsien Lee, Pin-Yao Lin, Tzu-Ning Yu, Chung-I Chen, Ming-Jer Chen, Maw-Sheng Lee, Chien-Hong Chen
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引用次数: 0

摘要

背景:在体外受精(IVF)中,活检囊胚的滋养外胚层(TE)细胞中的线粒体 DNA(mtDNA)水平被认为与细胞的发育潜能有关。然而,对于使用 mtDNA 水平作为预测试管婴儿结果的可靠生物标志物,学者们意见不一。因此,本研究旨在评估以mitoscore测量的线粒体拷贝数与胚胎发育特征和倍性的相关性:这项回顾性研究分析了胚胎的发育特征和活检滋养层细胞中的 mtDNA 水平。这项分析是在 2021 年 9 月至 2022 年 9 月期间利用延时监测和新一代测序技术进行的。对88名符合纳入标准的试管婴儿患者的515个囊胚进行了活检。在授精后 118 小时,使用所有记录的图像对胚胎形态动力学和形态学进行评估。在第 5 或第 6 天对具有适当形态的囊胚进行 TE 活检和植入前非整倍体基因检测(PGT-A)。统计分析包括广义估计方程、皮尔逊卡方检验、费雪精确检验和 Kruskal-Wallis 检验,显著性水平设定为 P 结果:为了研究有丝分裂分数低与高的囊胚在胚胎特征上的差异,根据有丝分裂分数将囊胚分为四等分。在形态动力学特征方面,大多数发育动力学和观察到的裂解畸形没有发现显著差异。然而,有丝分裂分数组 1 的囊胚在 tPNf 后达到 3 细胞期(t3;中位数:14.4 h)的时间比有丝分裂分数组 2 的囊胚(中位数:13.8 h)长,第二个细胞周期(CC2;中位数:11.7 h)也比有丝分裂分数组 2(中位数:11.3 h)和 4(中位数:11.4 h)的囊胚长:P 结论:通过活检确定的线粒体 DNA 含量不同的囊胚,在植入前的早期发育中表现出相似的特征,这一点可通过延时成像观察到。然而,通过线粒体DNA有丝分裂分数确定的线粒体DNA水平可单独作为非整倍体的预测指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating developmental characteristics of biopsied blastocysts stratified by mitochondrial copy numbers using time-lapse monitoring.

Background: For in vitro fertilization (IVF), mitochondrial DNA (mtDNA) levels in the trophectodermal (TE) cells of biopsied blastocysts have been suggested to be associated with the cells' developmental potential. However, scholars have reached differing opinions regarding the use of mtDNA levels as a reliable biomarker for predicting IVF outcomes. Therefore, this study aims to assess the association of mitochondrial copy number measured by mitoscore associated with embryonic developmental characteristics and ploidy.

Methods: This retrospective study analyzed the developmental characteristics of embryos and mtDNA levels in biopsied trophectodermal cells. The analysis was carried out using time-lapse monitoring and next-generation sequencing from September 2021 to September 2022. Five hundred and fifteen blastocysts were biopsied from 88 patients undergoing IVF who met the inclusion criteria. Embryonic morphokinetics and morphology were evaluated at 118 h after insemination using all recorded images. Blastocysts with appropriate morphology on day 5 or 6 underwent TE biopsy and preimplantation genetic testing for aneuploidy (PGT-A). Statistical analysis involved generalized estimating equations, Pearson's chi-squared test, Fisher's exact test, and Kruskal-Wallis test, with a significance level set at P < 0.05.

Results: To examine differences in embryonic characteristics between blastocysts with low versus high mitoscores, the blastocysts were divided into quartiles based on their mitoscore. Regarding morphokinetic characteristics, no significant differences in most developmental kinetics and observed cleavage dysmorphisms were discovered. However, blastocysts in mitoscore group 1 had a longer time for reaching 3-cell stage after tPNf (t3; median: 14.4 h) than did those in mitoscore group 2 (median: 13.8 h) and a longer second cell cycle (CC2; median: 11.7 h) than did blastocysts in mitoscore groups 2 (median: 11.3 h) and 4 (median: 11.4 h; P < 0.05). Moreover, blastocysts in mitoscore group 4 had a lower euploid rate (22.6%) and a higher aneuploid rate (59.1%) than did those in the other mitoscore groups (39.6-49.3% and 30.3-43.2%; P < 0.05). The rate of whole-chromosomal alterations in mitoscore group 4 (63.4%) was higher than that in mitoscore groups 1 (47.3%) and 2 (40.1%; P < 0.05). A multivariate logistic regression model was used to analyze associations between the mitoscore and euploidy of elective blastocysts. After accounting for factors that could potentially affect the outcome, the mitoscore still exhibited a negative association with the likelihood of euploidy (adjusted OR = 0.581, 95% CI: 0.396-0.854; P = 0.006).

Conclusions: Blastocysts with varying levels of mitochondrial DNA, identified through biopsies, displayed similar characteristics in their early preimplantation development as observed through time-lapse imaging. However, the mitochondrial DNA level determined by the mitoscore can be used as a standalone predictor of euploidy.

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来源期刊
Reproductive Biology and Endocrinology
Reproductive Biology and Endocrinology 医学-内分泌学与代谢
CiteScore
7.90
自引率
2.30%
发文量
161
审稿时长
4-8 weeks
期刊介绍: Reproductive Biology and Endocrinology publishes and disseminates high-quality results from excellent research in the reproductive sciences. The journal publishes on topics covering gametogenesis, fertilization, early embryonic development, embryo-uterus interaction, reproductive development, pregnancy, uterine biology, endocrinology of reproduction, control of reproduction, reproductive immunology, neuroendocrinology, and veterinary and human reproductive medicine, including all vertebrate species.
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