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首页> 外文期刊>Andrology >High sperm DNA DNA fragmentation delays human embryo kinetics when oocytes from young and healthy donors are microinjected
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High sperm DNA DNA fragmentation delays human embryo kinetics when oocytes from young and healthy donors are microinjected

机译:当来自年轻和健康供体的卵母细胞是微量反射的时,高精度DNA DNA碎裂延迟人胚胎动力学

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Abstract Background Time‐lapse monitoring ( TLM ) technology has been implemented in the clinical setting for the culture and selection of human embryos. Many studies have assessed the association between sperm DNA fragmentation ( sDNA f) and clinical outcomes after ART , but little is known about the influence of sDNA on embryo morphokinetics. Objectives The objective of this retrospective study, which includes 971 embryos from 135 consecutive ICSI cycles (56 cases with own oocytes, 79 with oocytes from young and healthy donors), was to assess if sDNA f has an impact on embryo morphokinetics. Materials and methods Samples used to perform ICSI were analyzed by the flow cytometry TUNEL assay, and embryo development was assessed through an EmbyoScope ? system. The association between sDNA f and the timings of cell cleavage was analyzed by categorizing the first variable into quartiles: ≤6.50%; 6.51–10.70%; 10.71–20.15%; 20.15%. Results In cases where sDNA f was above 20.15% (the upper quartile), embryos derived from donated oocytes ( n ?=?644) showed significantly slower divisions. Such association was not observed in embryos obtained from the patients’ own oocytes ( n ?=?327). The embryo cleavage pattern (either normal, direct from 1 to 3 blastomeres, direct from 1 to 4 blastomeres, incomplete, reversed or asynchronous) was independent of the sDNA f level. Blastocyst arrival rate was 63.0% and the rate of good quality embryos (transferred and frozen embryos divided by the number of zygotes) was 45.49%. Neither parameter was related to the levels of sDNA f. Discussion According to our results, the association between high sDNA f and donated oocytes led to delayed cell division. To our knowledge, this is the first study suggesting that sDNA f can delay human embryo cleavage timings when oocytes from donors are inseminated. Conclusions This finding may indicate that, in the presence of increased DNA damage, time is needed before the first embryonic cell division for the activation of the optimal DNA repairing machinery in higher quality oocytes.
机译:摘要背景延时监测(TLM)技术已在临床环境中实施,用于培养和选择人类胚胎。许多研究已经评估了精子DNA片段化(SDNA F)和术后临床结果之间的关联,但关于SDNA对胚胎的影响很少。目的是该回顾性研究的目的,其中包括来自135个连续ICSI循环的971个胚胎(56例自有卵母细胞,79例,来自年轻人和健康供体的卵母细胞)是评估SDNA F对胚胎内动力学产生影响。通过流式细胞术间毒测定分析用于执行ICSI的材料和方法样品,通过副镜评估胚胎发育?系统。通过将第一变量分类为四分位数来分析SDNA F与细胞切割的时序之间的关联:≤6.50%; 6.51-10.70%; 10.71-20.15%; & 20.15%。结果SDNA F高于20.15%(上四分位数)的情况下,衍生自捐赠的卵母细胞的胚胎(n?=Δ444)显示出显着较慢的划分。在从患者自己的卵母细胞获得的胚胎中未观察到这种关联(n?= 327)。胚胎切割图案(正常,直接从1至3个卵形,直接从1〜4个卵形,不完全,反向或异步)与SDNA F水平无关。胚泡到达率为63.0%,良好的胚胎(转移和冷冻胚胎除以Zygotes的胚胎)的速度为45.49%。任何参数都没有与SDNA F的水平有关。讨论根据我们的结果,高SDNA F和捐赠的卵母细胞之间的关联导致延迟细胞分裂。为了我们的知识,这是第一项研究表明,当捐赠者的卵母细胞被占用时,SDNA F可以延迟人胚胎切割定时。结论该发现可能表明,在存在增加的DNA损伤的情况下,在第一个胚胎细胞分裂之前需要在更高质量的卵母细胞中激活最佳DNA修复机械。

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