Meseguer Marcos, Martínez-Conejero J A, O'Connor J Enrique, Pellicer Antonio, Remohí José, Garrido Nicolás
Instituto Valenciano de Infertilidad Valencia, Universidad de Valencia, Valencia, Spain; Fundación IVI, Valencia, Spain.
Instituto Valenciano de Infertilidad Valencia, Universidad de Valencia, Valencia, Spain; Fundación IVI, Valencia, Spain.
Fertil Steril. 2008 May;89(5):1191-1199. doi: 10.1016/j.fertnstert.2007.05.005. Epub 2007 Aug 6.
One byproduct resulting from free radical damage is the DNA hydroxylation also known as DNA oxidation. Our aim with this work was to determine the relevance of sperm DNA oxidation on embryo quality in oocyte donation cycles.
We prospectively studied pairs of oocyte donation cycles, i.e., the same oocyte donors, donating to two recipients, where the only difference between the two treatments was the use of a different sperm sample.
University-affiliated private IVF setting.
PATIENT(S): Infertile male partners from couples undergoing oocyte donation cycles (n = 38): 76 semen aliquots analyzed before and after semen processing by swim up.
INTERVENTION(S): None.
MAIN OUTCOME MEASURE(S): We measured sperm DNA oxidation by flow cytometry using the OxiDNA assay and correlated it with embryo quality parameters, implantation, and pregnancy outcome.
RESULT(S): A positive correlation was seen between embryo fragmentation and DNA oxidation of capacitated samples at 48 hours and 72 hours after fertilization. However, when we analyzed the differences in the IVF outcome parameters of the couples who shared the oocyte cohort (same donor) with the differences in the OxiDNA values, we observed increased and further relationships with cell embryo division 48 hours after fertilization. A negative association with blastocyst formation was also detected.
CONCLUSION(S): Oxidative damage in the DNA is clearly increased in samples with lower sperm motility. An association between early and late embryo quality and sperm DNA oxidation supports the relevance of the hydroxylation of 8-oxoguanine as a biomarker of sperm quality reflecting the free radical damage in human sperm.
自由基损伤产生的一种副产物是DNA羟基化,也称为DNA氧化。我们开展这项研究的目的是确定卵母细胞捐赠周期中精子DNA氧化与胚胎质量的相关性。
我们前瞻性地研究了多对卵母细胞捐赠周期,即同一卵母细胞供体向两名受体捐赠卵母细胞,两种治疗方法之间的唯一区别是使用了不同的精子样本。
大学附属私立体外受精机构。
接受卵母细胞捐赠周期的夫妇中的不育男性伴侣(n = 38):对76份精液样本在上浮法精液处理前后进行分析。
无。
我们使用OxiDNA检测法通过流式细胞术测量精子DNA氧化,并将其与胚胎质量参数、着床和妊娠结局相关联。
在受精后48小时和72小时,胚胎碎片与获能样本的DNA氧化之间呈正相关。然而,当我们分析共享卵母细胞队列(同一供体)的夫妇的体外受精结局参数差异与OxiDNA值差异时,我们观察到受精后48小时与细胞胚胎分裂之间存在增加且进一步的关系。还检测到与囊胚形成呈负相关。
精子活力较低的样本中DNA的氧化损伤明显增加。早期和晚期胚胎质量与精子DNA氧化之间的关联支持了8-氧代鸟嘌呤羟基化作为反映人类精子自由基损伤的精子质量生物标志物的相关性。