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精浆抗氧化剂直接参与公猪精子的冷冻耐受性。

Seminal plasma antioxidants are directly involved in boar sperm cryotolerance.

作者信息

Li Junwei, Barranco Isabel, Tvarijonaviciute Asta, Molina Manuel F, Martinez Emilio A, Rodriguez-Martinez Heriberto, Parrilla Inmaculada, Roca Jordi

机构信息

Department of Medicine and Animal Surgery, Faculty of Veterinary Science, University of Murcia, Spain.

Department of Clinical and Experimental Medicine (IKE), University of Linköping, Sweden.

出版信息

Theriogenology. 2018 Feb;107:27-35. doi: 10.1016/j.theriogenology.2017.10.035. Epub 2017 Oct 31.

Abstract

Boar ejaculates are ejected in fractions with a specific composition in terms of sperm numbers and seminal plasma (SP), which is reflected in the varying sperm cryotolerance observed among different fractions. As boar sperm are particularly sensitive to oxidative stress, this study evaluated the role of SP antioxidants in the observed differences in sperm cryotolerance among ejaculate fractions. Ten ejaculates from five boars were manually collected in fractions: the first 10 mL of the sperm-rich fraction (SRF), the rest of the SRF and the post-SRF. Semen samples comprising the entire ejaculate (EE) were created by proportionally mixing the three fractions described above. Each of the 40 resulting semen samples was split into two aliquots: one was used for sperm cryopreservation following a standard protocol utilizing 0.5-mL straws, and the other was used to collect SP for antioxidant assessment. Frozen-thawed (FT) sperm from the SRF (the first 10 mL of the SRF and the rest of the SRF) and those from post-SRF were of the highest and worst quality, respectively, which was measured in terms of total and objective progressive motility and viability (P < 0.01). Viable FT sperm from the post-SRF generated more reactive oxygen species and experienced more lipid peroxidation than those from the SRF (both the first 10 mL and the rest of the SRF) (P < 0.01). The percentage of FT sperm exhibiting fragmented nuclear DNA did not differ among ejaculate fractions and the EE. Catalase, glutathione peroxidase and glutathione peroxidase 5 (GPx-5) were lowest in SP from the first 10 mL of the SRF (P < 0.001), whereas superoxide dismutase (SOD) and paraoxonase 1 (PON-1) were highest in SP of the SRF (both the first 10 mL and the rest of the SRF) (P < 0.01). Trolox-equivalent antioxidant capacity (TEAC) and the ferric-reducing ability of plasma (FRAP) were highest in SP from the first 10 mL of the SRF and lowest in the post-SRF (P < 0.001), whereas cupric-reducing antioxidant capacity was lowest (P < 0.05) in SP from the first 10 mL of the SRF. Regression analyses indicated that certain SP antioxidants had good predictive value for post-thaw recovery rates of total motility (R = 54.8%, P < 0.001; including SOD, TEAC and FRAP) and viability (R = 56.1%, P < 0.001; including SOD, PON-1, GPx-5 and TEAC). These results demonstrated that certain SP antioxidants are positively involved in boar sperm cryotolerance, minimizing the oxidative stress imposed by cryogenic handling.

摘要

公猪射精是分批次射出的,各批次精液在精子数量和精浆(SP)成分上具有特定组成,这反映在不同批次精液中观察到的精子冷冻耐受性差异上。由于公猪精子对氧化应激特别敏感,本研究评估了精浆抗氧化剂在射精各批次间精子冷冻耐受性差异中所起的作用。从五头公猪收集了十次射精,并将其手动分批次采集:富含精子部分(SRF)的前10毫升、SRF的其余部分以及SRF之后的部分。通过按比例混合上述三个部分制备包含整个射精量(EE)的精液样本。将得到的40个精液样本中的每一个均分成两份:一份按照使用0.5毫升细管的标准方案用于精子冷冻保存,另一份用于收集精浆以进行抗氧化剂评估。SRF(SRF的前10毫升和SRF的其余部分)的冻融(FT)精子质量最高,而SRF之后部分的FT精子质量最差,这是根据总活力、客观前进运动能力和活力来衡量的(P<0.01)。与SRF(SRF的前10毫升和SRF的其余部分)的FT活精子相比,SRF之后部分的FT活精子产生更多活性氧并经历更多脂质过氧化(P<0.01)。射精各部分和EE中表现出核DNA片段化的FT精子百分比没有差异。过氧化氢酶、谷胱甘肽过氧化物酶和谷胱甘肽过氧化物酶5(GPx-5)在SRF前10毫升的精浆中含量最低(P<0.001),而超氧化物歧化酶(SOD)和对氧磷酶1(PON-1)在SRF(SRF的前10毫升和SRF的其余部分)的精浆中含量最高(P<0.01)。Trolox等效抗氧化能力(TEAC)和血浆铁还原能力(FRAP)在SRF前10毫升的精浆中最高,在SRF之后部分的精浆中最低(P<0.001),而铜还原抗氧化能力在SRF前10毫升的精浆中最低(P<0.05)。回归分析表明,某些精浆抗氧化剂对解冻后总活力(R=54.8%,P<0.001;包括SOD、TEAC和FRAP)和活力(R=56.1%,P<0.001;包括SOD、PON-1、GPx-5和TEAC)的恢复率具有良好的预测价值。这些结果表明,某些精浆抗氧化剂积极参与公猪精子的冷冻耐受性,将低温处理施加的氧化应激降至最低。

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