Prooxidant-antioxidant homeostasis and reproductive capacity of boars under the influence of copper citrate

A. S. Siabro
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Abstract

Peroxide oxidation processes play a leading role in ensuring the motility, survival and fertilizing ability of sperm. A special role is given to limiting antioxidants (vitamins, amino acids, microelements). Therefore, the development of standardized feeding programs to provide antioxidant nutrition is one of the effective methods of reproductive biotechnology. The aim of the study was to determine the effect of copper citrate on the quality of sperm production and the formation of prooxidant-antioxidant homeostasis in sperm of boars. The experiment used adult boars of a large white breed, analogs in age, live weight and quality of sperm products. Experimental groups were fed copper citrate above the norm by 10% and 20%. It has been determined that feeding combined feed to boars with the addition of this compound in an amount of 10% above norm probably increases the weight of ejaculate by 12.5% (P<0.05), the sperm motility and survival by 6.5% (P<0.01) and 13.5% (P<0.001), respectively. Such changes in sperm occur against the background of an increase in SOD activity by 80.6% (P<0.05), a decrease in catalase by 43.5% (P<0.05), a slowing down of peroxidation processes — a decrease in diene conjugates and TBA-active compounds. The additional introduction to the diet of copper citrate by 20% more than normal increases the concentration of spermatozoa by 13.2% (P<0.01), the number of live spermatozoa by 20.7% (P<0,01), with a simultaneous decrease in their survival, due to the acceleration of peroxidation processes — an increase in the content of diene conjugates, TBA-active compounds and DAA and a decrease in reduced glutathione. It has been found out that the fertilizing ability of sperm significantly depended on the amount of fed microelement. Sows inseminated with sperm of boars receiving copper supplement in the diet by 10%, had higher fertility rates by 7.1%, multifertility by 3.6%, and a litter weight at weaning by 8.8%. The additional administration of copper citrate reduced the fertility of sperm by 20%, as the fertility rate of sows of III group was the lowest and was 7.7% and 14.3% lower compared to I and II groups. A similar trend occurred in terms of high fertility, a litter weight at birth and weaning. Therefore, the additional feeding of a small amount of copper has a positive effect on the functional activity of sperm and the processes of normal fertilization, growth and development of embryos and newborn piglets by optimizing the formation of prooxidant-antioxidant homeostasis.
柠檬酸铜对公猪促氧化-抗氧化稳态及繁殖能力的影响
过氧化氧化过程在保证精子的活力、存活和受精能力方面起着主导作用。限制抗氧化剂(维生素、氨基酸、微量元素)有特殊作用。因此,制定标准化喂养方案以提供抗氧化营养是生殖生物技术的有效方法之一。本研究的目的是确定柠檬酸铜对公猪精子生产质量和促氧化-抗氧化稳态形成的影响。试验选用一种大型白色品种的成年公猪,它们的年龄、活重和精子产品质量相似。试验组分别饲喂高于标准值10%和20%的柠檬酸铜。结果表明,在组合饲料中添加高于标准10%的该化合物,可使公猪射精重量提高12.5% (P<0.05),精子活力和存活率分别提高6.5% (P<0.01)和13.5% (P<0.001)。精子发生这种变化的背景是SOD活性增加80.6% (P<0.05),过氧化氢酶减少43.5% (P<0.05),过氧化过程减慢-二烯偶联物和tba活性化合物减少。在日粮中添加比正常水平多20%的柠檬酸铜,精子浓度增加13.2% (P<0.01),活精子数量增加20.7% (P<0.01),同时由于过氧化过程加速,双烯偶联物、tba活性化合物和DAA含量增加,还原性谷胱甘肽含量减少,精子存活率降低。研究发现,精子的受精能力与饲喂微量元素的量有显著关系。饲粮中添加10%铜的公猪精子,母猪受精率提高7.1%,多胎率提高3.6%,断奶窝重提高8.8%。添加柠檬酸铜可使精子的受精率降低20%,其中III组母猪的受精率最低,分别比I组和II组低7.7%和14.3%。在高生育率、出生和断奶时的窝重方面也出现了类似的趋势。因此,添加少量铜可以通过优化促氧化-抗氧化平衡的形成,对精子的功能活性以及胚胎和新生仔猪的正常受精和生长发育过程产生积极影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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