Mitochondrial DNA copy number in cumulus granulosa cells as a predictor for embryo morphokinetics and chromosome status.

IF 2.1 4区 医学 Q3 ANDROLOGY Systems Biology in Reproductive Medicine Pub Date : 2023-04-01 DOI:10.1080/19396368.2022.2145248
Pitra Rahmawati, Budi Wiweko, Arief Boediono
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Abstract

While morphokinetic evaluation of embryos has become the most commonly used technique in IVF to select embryos for transfer, studies have demonstrated that mitochondrial DNA (mtDNA) copy number is correlated with embryo viability and transfer outcomes. Correspondingly, this cohort study aims to evaluate the association between the mtDNA copy number in cumulus granulosa cells (CGCs) with embryo morphokinetic parameters and chromosomal status. Real-time PCR was employed to measure the mtDNA copy number of the 129 CGCs in samples obtained from 30 patients undergoing the IVF-IMSI program at Morula IVF Jakarta between July and October 2020. Bivariate and multiple analyses were utilized to determine its relationship with embryo morphokinetics, blastocyst yield, and chromosomal status. According to the analysis, there was a significant correlation between the mtDNA copy number and the blastocyst status after adjusting for the maternal age and sperm morphology (coefficient 0.832, p value = 0.032, RR value 2.299). Moreover, a significant link was observed between mtDNA copy number in CGC and early embryo developmental phase M1 (t2-t8), using the equation of M1 is 5.702-0.271 mtDNA copy number of CGCs + 0.017 maternal age + 0.013 sperm motility -0.115 sperm morphology (p value = 0.032). However, no correlation was found between the mtDNA copy number in CGCs with the other morphokinetic parameters (M2: tC-tEB, M3: t2-tEB, DC, RC, MN with p > 0.05), or the chromosomal status of the embryos (euploid: 139.44 ± 133.12, aneuploid: 142.40 ± 111.30, p = 0.806). In conclusion, our study suggests that mtDNA copy number in CGCs can serve as a useful biomarker for blastocyst status and early embryo developmental phase but not for chromosomal status.

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粒丘细胞线粒体DNA拷贝数作为胚胎形态动力学和染色体状态的预测因子。
胚胎形态动力学评价已成为体外受精中选择胚胎进行移植的最常用技术,研究表明线粒体DNA (mtDNA)拷贝数与胚胎活力和移植结果相关。因此,本队列研究旨在评估积云颗粒细胞(cgc) mtDNA拷贝数与胚胎形态动力学参数和染色体状态的关系。采用Real-time PCR技术测量了在2020年7月至10月期间在Morula IVF Jakarta接受IVF- imsi计划的30例患者样本中的129个CGCs的mtDNA拷贝数。利用双变量和多元分析来确定其与胚胎形态动力学、囊胚产量和染色体状态的关系。经分析,在调整母体年龄和精子形态后,mtDNA拷贝数与囊胚状态存在显著相关(系数0.832,p值= 0.032,RR值2.299)。此外,CGC mtDNA拷贝数与早期胚胎发育阶段M1 (t2-t8)之间存在显著联系,M1为5.702-0.271,CGC mtDNA拷贝数+ 0.017母亲年龄+ 0.013精子活力-0.115精子形态(p值= 0.032)。而CGCs mtDNA拷贝数与其他形态动力学参数(M2: tC-tEB, M3: t2-tEB, DC, RC, MN, p > 0.05)和胚胎染色体状态(整倍体:139.44±133.12,非整倍体:142.40±111.30,p = 0.806)均无相关性。综上所述,我们的研究表明,mtDNA拷贝数可以作为囊胚状态和早期胚胎发育阶段的有用生物标志物,但不能作为染色体状态的有用生物标志物。
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来源期刊
CiteScore
4.30
自引率
4.20%
发文量
27
审稿时长
>12 weeks
期刊介绍: Systems Biology in Reproductive Medicine, SBiRM, publishes Research Articles, Communications, Applications Notes that include protocols a Clinical Corner that includes case reports, Review Articles and Hypotheses and Letters to the Editor on human and animal reproduction. The journal will highlight the use of systems approaches including genomic, cellular, proteomic, metabolomic, bioinformatic, molecular, and biochemical, to address fundamental questions in reproductive biology, reproductive medicine, and translational research. The journal publishes research involving human and animal gametes, stem cells, developmental biology and toxicology, and clinical care in reproductive medicine. Specific areas of interest to the journal include: male factor infertility and germ cell biology, reproductive technologies (gamete micro-manipulation and cryopreservation, in vitro fertilization/embryo transfer (IVF/ET) and contraception. Research that is directed towards developing new or enhanced technologies for clinical medicine or scientific research in reproduction is of significant interest to the journal.
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