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首页> 外文期刊>Preventive Veterinary Medicine >Supplementation of herbal plants differently modulated metabolic profile, insulin sensitivity, and oxidative stress in transition dairy cows fed various extruded oil seeds
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Supplementation of herbal plants differently modulated metabolic profile, insulin sensitivity, and oxidative stress in transition dairy cows fed various extruded oil seeds

机译:补充各种挤压油料种子的过渡奶牛中,草药植物的添加可不同地调节其代谢特性,胰岛素敏感性和氧化应激

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摘要

The study investigated the effects of a mixture of herbal plants (HM) and two sources of unsaturated fatty acids (FA), extruded linseed (LS) and soybean (SB), on metabolic profile, insulin sensitivity, and oxidative status of transition dairy cows. Thirty-two prepartum Holstein cows, blocked by parity and calving day, were randomly assigned to 1 of 4 treatments, in a 2 x 2 factorial design, starting from 25 days before the expected calving date to 26 days postpartum. The supplementation rates of HM were 150 and 170 g/animal/day at pre- and postpartum, respectively. Blood samples were analyzed for metabolites on day 7.15 +/- 1.70 prepartum and on days 1 and 21 postpartum. An intravenous glucose tolerance test (IV-GTT) was conducted on day 25 postpartum. Data showed that cows supplemented with HM had lower serum concentration of NEFA (0.395 vs. 0.602 +/- 0.044 mmol/L; P 0.01) and NEFA to insulin ratio (Pc 0.01) postpartum. Compared to animals fed SB-based diets, cows fed the LS-based diet had greater serum glucose concentration during prepartum (80.7 vs. 71.3 +/- 3.32 mg/dL; P=0.06) and postpartum period (86.3 vs. 73.5 +/- 3.35 mg/dL; P=0.01), as well as lower NEFA (0.425 vs. 0.572 +/- 0.044mmol/L; P= 0.03) and insulin to glucose ratio (P 0.01) postpartum. Revised quantitative insulin-sensitivity check index revealed that supplementing HM in LS-based diet improved insulin sensitivity (0.45 vs. 0.41 +/- 0.013; P=0.03) prepartum, whereas after parturition, the HM addition was effective for both oil seeds (0.40 vs. 0.37 +/- 0.008; P=0.06) in enhancing insulin sensitivity. Result of IV-GTF indicated that cows fed LS-based diets had higher basal glucose concentration (63.7 vs. 55.7 +/- 2.37; mg/dL; P=0.02) and lower glucose area under the curve (995.8 vs. 1529.5 +/- 100.7; mg/dL x 45 min; P 0.01). Supplementing HM resulted in greater total antioxidant capacity prepartum (0.55 vs. 0.48 +/- 0.017 nmol/L; P=0.01) and lower malondialdehyde concentration at prepartum (1.03 vs. 1.96 +/- 0.140 mu mol/L; P 0.01) and postpartum (1.32 vs. 1.88 +/- 0.178 mu mol/L; P = 0.04). Although feeding LS ameliorated insulin resistance, this feeding strategy lowered total antioxidant capacity prepartum (0. 48 vs. 0.55 +/- 0.017 nmol/L; P 0.01) and increased malondialdehyde concentration postpartum more than the SB diet (1.91 vs. 1.28 +/- 0.172 mu mol/L; P= 0.02). Overall, both HM supplementation and LS feeding improved metabolic profile and insulin response following glucose infusion, although feeding of LS-based diets induced an increased oxidative stress. (C) 2014 Elsevier B.V. All rights reserved.
机译:这项研究调查了草本植物(HM)和两种不饱和脂肪酸(FA)的混合物(挤压亚麻籽(LS)和大豆(SB))对过渡型奶牛的代谢谱,胰岛素敏感性和氧化状态的影响。从产犊前25天到产后26天,以2 x 2析因设计,将32只产前受胎龄和产犊天数阻断的荷斯坦奶牛随机分配给4种处理方法之一。产前和产后HM的补充率分别为150和170 g /动物/天。在产前7.15 +/- 1.70天以及产后1和21天对血样进行代谢物分析。产后第25天进行静脉葡萄糖耐量试验(IV-GTT)。数据显示,补充了HM的奶牛产后血清NEFA浓度较低(0.395比0.602 +/- 0.044 mmol / L; P <0.01)和NEFA与胰岛素的比率(Pc 0.01)较低。与饲喂SB饲料的动物相比,饲喂LS饲料的母牛在产前(80.7 vs. 71.3 +/- 3.32 mg / dL; P = 0.06)和产后时期(86.3 vs. 73.5 + / -3.35 mg / dL; P = 0.01),以及产后较低的NEFA(0.425 vs. 0.572 +/- 0.044mmol / L; P = 0.03)和胰岛素与葡萄糖的比率(P <0.01)。修订后的定量胰岛素敏感性检查指数显示,在基于LS的饮食中补充HM可以改善产前胰岛素敏感性(0.45对0.41 +/- 0.013; P = 0.03),而分娩后,HM对两种油料种子均有效(0.40相对于0.37 +/- 0.008; P = 0.06)来增强胰岛素敏感性。 IV-GTF结果表明,饲喂基于LS的日粮的奶牛的基础葡萄糖浓度较高(63.7 vs. 55.7 +/- 2.37; mg / dL; P = 0.02),曲线下葡萄糖面积较低(995.8 vs. 1529.5 + /)。 -100.7; mg / dL x 45分钟; P <0.01)。补充HM可使产前总抗氧化能力更高(0.55对0.48 +/- 0.017 nmol / L; P = 0.01)和更低的丙二醛浓度(产前1.03对1.96 +/- 0.140μmol/ L; P <0.01)和产后(1.32 vs. 1.88 +/- 0.178 mu mol / L; P = 0.04)。尽管饲喂LS可以改善胰岛素抵抗,但这种饲喂策略降低了产前总抗氧化能力(0. 48 vs. 0.55 +/- 0.017 nmol / L; P <0.01),并且产后丙二醛浓度比SB饮食高(1.91 vs. 1.28 + (-)0.172μmol/ L; P = 0.02)。总体而言,尽管补充基于LS的饮食会引起氧化应激的增加,但HM补充和LS喂养都能改善葡萄糖注入后的代谢状况和胰岛素反应。 (C)2014 Elsevier B.V.保留所有权利。

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