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牛精子 DNA 碎片化和氧化应激对体外胚胎早期发育结局的影响。

Influence of bovine sperm DNA fragmentation and oxidative stress on early embryo in vitro development outcome.

机构信息

Centro de Ciências Naturais e Humanas (CCNH), Federal University of ABC, Rua Santa Adélia, 166, Bairro Bangu, Santo André, SP CEP 09210-170, Brazil.

出版信息

Reproduction. 2013 Oct 1;146(5):433-41. doi: 10.1530/REP-13-0123. Print 2013.

DOI:10.1530/REP-13-0123
PMID:23940385
Abstract

Sperm chromatin fragmentation may be caused by a number of factors, the most significant of which is reactive oxygen species. However, little is known about the effect of sperm oxidative stress (OS) on DNA integrity, fertilization, and embryonic development in cattle. Therefore, the goal of this study was to evaluate the influence of sperm OS susceptibility on the DNA fragmentation rate and in vitro embryo production (IVP) in a population of bulls. Groups of cryopreserved sperm samples were divided into four groups, based on their susceptibility to OS (G1, low OS; G2, average OS; G3, high OS; and G4, highest OS). Our results demonstrated that the sperm DNA integrity was compromised in response to increased OS susceptibility. Furthermore, semen samples with lower susceptibility to OS were also less susceptible to DNA damage (G1, 4.06%; G2, 6.09%; G3, 6.19%; and G4, 6.20%). In addition, embryo IVP provided evidence that the embryo cleavage rate decreased as the OS increased (G1, 70.18%; G2, 62.24%; G3, 55.85%; and G4, 50.93%), but no significant difference in the blastocyst rate or the number of blastomeres was observed among the groups. The groups with greater sensitivity to OS were also associated with a greater percentage of apoptotic cells (G1, 2.6%; G2, 2.76%; G3, 5.59%; and G4, 4.49%). In conclusion, we demonstrated that an increased susceptibility to OS compromises sperm DNA integrity and consequently reduces embryo quality.

摘要

精子染色质碎片化可能由多种因素引起,其中最重要的是活性氧。然而,人们对牛精子氧化应激(OS)对 DNA 完整性、受精和胚胎发育的影响知之甚少。因此,本研究的目的是评估精子 OS 易感性对牛群精子 DNA 碎片化率和体外胚胎生产(IVP)的影响。根据 OS 易感性(G1:低 OS;G2:平均 OS;G3:高 OS;G4:最高 OS),将冷冻保存的精子样本分为四组。结果表明,精子 DNA 完整性因 OS 易感性增加而受损。此外,对 OS 易感性较低的精液样本也不易受到 DNA 损伤(G1:4.06%;G2:6.09%;G3:6.19%;G4:6.20%)。此外,胚胎 IVP 提供的证据表明,胚胎卵裂率随 OS 增加而降低(G1:70.18%;G2:62.24%;G3:55.85%;G4:50.93%),但各组间囊胚率或卵裂球数无显著差异。OS 敏感性较高的组也与凋亡细胞的百分比增加相关(G1:2.6%;G2:2.76%;G3:5.59%;G4:4.49%)。总之,我们证明 OS 易感性增加会损害精子 DNA 完整性,从而降低胚胎质量。

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