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不同繁殖时期奶牛抗氧化酶活性和代谢参数的变化

Changes in antioxidant enzyme activities and metabolic parameters in dairy cows during different reproductive periods.

作者信息

Sayiner Serkan, Darbaz Isfendiyar, Ergene Osman, Aslan Selim

机构信息

Department of Biochemistry, Faculty of Veterinary Medicine, Near East University, 99138, Nicosia, Cyprus; Animal Hospital, Faculty of Veterinary Medicine, Near East University, 99138, Nicosia, Cyprus.

Department of Obstetrics and Gynaecology, Faculty of Veterinary Medicine, Near East University, 99138, Nicosia, Cyprus; Animal Hospital, Faculty of Veterinary Medicine, Near East University, 99138, Nicosia, Cyprus.

出版信息

Theriogenology. 2021 Jan 1;159:116-122. doi: 10.1016/j.theriogenology.2020.10.024. Epub 2020 Oct 24.

DOI:10.1016/j.theriogenology.2020.10.024
PMID:33130296
Abstract

Our study aimed to monitor the alterations in antioxidant enzyme activities and the metabolic profile parameters and their relationships in dairy cows during different reproductive stages (gestational-, dry-, pre- and post-partum). The collection of blood samples from thirty healthy pregnant Holstein cows took place at a commercial dairy farm, between September 2015 and June 2016. The cows covered eight different reproductive stages (4-6 weeks before the dry period (D4-6w)), at the beginning of the dry period (D0; on day 210 of gestation), the first month of the dry period (D1m), antepartum day 8 (APd8), postpartum (PP) day 3 (PPd3), PP day 8 (PPd8), PP between 3rd-4th weeks (PP3-4w) and PP between 80 and 90 days (PP80-90d). The activities of glutathione peroxidase (GPx) and superoxide dismutase (SOD) were analysed to monitor and evaluate the antioxidant system. Concentrations of beta-hydroxybutyrate (BHBA), non-esterified fatty acids (NEFA), albumin, glucose, total bilirubin, cholesterol, calcium (Ca) and the enzyme activities of aspartate aminotransferase (AST), glutamate dehydrogenase (GLDH), gamma-glutamyl transferase (GGT) were also determined as metabolic profile parameters. GPx activities increased in D1m (P < 0.05) and peaked during the PP3d and PP8d periods (P < 0.0001), with values decreasing again at the PP3-4w period. The most significant change in SOD activities was detected in the PP3-4w with a significant decrease (P < 0.05). BHBA and NEFA concentrations increased significantly during the PPd3 and PPd8 periods (P < 0.05), with BHBA decreased to low values in the PP3-4w (P < 0.05). Significant positive correlations were found between BHBA, NEFA, total bilirubin and GPx (0.784, 0.874 and 0.871; P < 0.05, P < 0.01 and P < 0.01 respectively). A significant negative correlation between calcium and cholesterol and GPx was found (-0.857, P < 0.01; and -0.681, P < 0.05, respectively). As a result, a relationship was determined between blood antioxidant enzymes and metabolic parameters at different periods. High GPx and SOD activities, especially in the early period before and after parturition, is thought to be related to the adaptation of the animals to this process. The lack of adaptation abilities of animals during these periods causes many problems seen during early postpartum. Therefore, considering GPx and SOD activity measurements in pre- and postpartum periods contributes to better management of these periods and the prevention of complications.

摘要

我们的研究旨在监测不同生殖阶段(妊娠期、干奶期、产前和产后)奶牛抗氧化酶活性和代谢谱参数的变化及其相互关系。2015年9月至2016年6月期间,在一家商业奶牛场采集了30头健康怀孕荷斯坦奶牛的血样。这些奶牛涵盖八个不同的生殖阶段(干奶期前4 - 6周(D4 - 6w))、干奶期开始时(D0;妊娠第210天)、干奶期第一个月(D1m)、产前第8天(APd8)、产后(PP)第3天(PPd3)、PP第8天(PPd8)、产后第3 - 4周(PP3 - 4w)和产后80 - 90天(PP80 - 90d)。分析了谷胱甘肽过氧化物酶(GPx)和超氧化物歧化酶(SOD)的活性,以监测和评估抗氧化系统。还测定了β - 羟基丁酸(BHBA)、非酯化脂肪酸(NEFA)、白蛋白、葡萄糖、总胆红素、胆固醇、钙(Ca)的浓度以及天冬氨酸转氨酶(AST)、谷氨酸脱氢酶(GLDH)、γ - 谷氨酰转移酶(GGT)的酶活性作为代谢谱参数。GPx活性在D1m时升高(P < 0.05),并在PP3d和PP8d期间达到峰值(P < 0.0001),在PP3 - 4w期间再次下降。SOD活性最显著的变化在PP3 - 4w时被检测到,显著降低(P < 0.05)。BHBA和NEFA浓度在PPd3和PPd8期间显著升高(P < 0.05),BHBA在PP3 - 4w时降至低值(P < 0.05)。发现BHBA、NEFA、总胆红素与GPx之间存在显著正相关(分别为0.784、0.874和0.871;P < 0.05、P < 0.01和P < 0.01)。发现钙与胆固醇和GPx之间存在显著负相关(分别为 - 0.857,P < 0.01;和 - 0.681,P < 0.05)。结果确定了不同时期血液抗氧化酶与代谢参数之间的关系。高GPx和SOD活性,尤其是在分娩前后的早期,被认为与动物对这一过程的适应有关。动物在这些时期缺乏适应能力会导致产后早期出现许多问题。因此,在产前和产后阶段考虑测量GPx和SOD活性有助于更好地管理这些阶段并预防并发症。

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