首页> 外文期刊>Livestock Science >Effects of chitooligosaccharide supplementation on growth performance, nutrient digestibility, blood characteristics and immune responses after lipopolysaccharide challenge in weanling pigs.
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Effects of chitooligosaccharide supplementation on growth performance, nutrient digestibility, blood characteristics and immune responses after lipopolysaccharide challenge in weanling pigs.

机译:补充壳寡糖对断奶仔猪脂多糖攻击后生长性能,养分消化率,血液特性和免疫反应的影响。

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摘要

The objective of this study was to determine the effects of dietary supplementation with chitooligosaccharide (COS) on growth performance, nutrient digestibility, blood characteristics and immune response in lipopolysaccharide-challenged weanling pigs. A total of 90 crossbred weanling pigs (5.44+or-0.50 kg BW) were employed in Exp. 1. The three dietary treatments were basal diets supplemented with 0, 2.5, and 5 g COS/kg, and fed for 28 d. Each treatment had 6 replications with 5 pigs per pen. Increasing the level of supplemental COS tended to linearly (P<0.10) improve ADG and ADFI during phase 2 and overall period, while there were no differences in G:F. The linear improvement in the apparent DM (P<0.05) and N (P<0.10) digestibility in pigs fed COS supplemented diets was noticed. The tested blood characteristics were not influenced under non-challenge conditions. In Exp. 2, a total of 20 pigs (5.22+or-0.31 kg BW) were initially assigned to two dietary treatments and fed basal diets supplemented with 0 or 0.5 g COS/kg for 28 d. At the end of d 28, half of the pigs in each treatment (n=5) were injected i.p. with Escherichia coli lipopolysaccharide at a concentration of 100 micro g/kg of BW. The other half of the pigs in each treatment were injected with sterile saline solution at a concentration of 100 micro g/kg of BW. This arrangement resulted in a 2x2 factorial design with diet and LPS challenge as the main effects. Blood sample and rectal temperature data were collected at 0, 2, 4 and 12 h post-challenge. Rectal temperatures increased as the result of LPS injection at 4 and 12 h post-challenge (P<0.05). Serum cortisol, IGF-1, and TNF- alpha concentration were also increased as the result of LPS challenge (P<0.05). The COS treatments resulted in lower cortisol concentrations at 2 h and higher IGF-1 concentrations at 4 h post-challenge (P<0.05). COS and LPS interactions were also observed on cortisol and IGF-1 when the COS effects were presented (P<0.05). Haptoglobin concentrations remained unaffected throughout the challenge period. White blood cell counts were increased in the LPS-treated pigs at 2 and 4 h post-challenge (P<0.01). Lymphocyte count was elevated at 2 h and reduced at 12 h post-challenge as the result of LPS challenge (P<0.05). However, there were no COS main effects observed on lymphocyte count throughout the challenge period. The comparison between two LPS challenged treatments also indicated that COS treatment has beneficial effects on rectal temperature, cortisol and IGF-1 concentrations. In conclusion, dietary supplementation with COS had little effect on nutrient digestibility and inflammatory stress markers in weanling pigs.
机译:这项研究的目的是确定日粮中添加低聚壳寡糖(COS)对脂多糖激发的断奶仔猪生长性能,营养消化率,血液特性和免疫反应的影响。 Exp。中总共使用了90头杂种断奶仔猪(5.44+或-0.50 kg BW)。 1.三种饮食疗法为基础饮食,分别添加0、2.5和5 g COS / kg,并饲喂28天。每个处理重复6次,每只猪5头。在第二阶段和整个时期,增加补充COS的水平趋于线性( P <0.10)改善ADG和ADFI,而G:F没有差异。观察到补充COS日粮的猪的表观DM( P <0.05)和N( P <0.10)消化率呈线性改善。在非挑战条件下,测试的血液特性不受影响。在实验中如图2所示,最初将总共20头猪(5.22 +或-0.31千克体重)分配到两种饮食治疗中,并在基础日粮中补充0或0.5 g COS / kg的饲料,持续28天。在第28天末,每次处理中一半的猪(n = 5)被腹膜内注射。用浓度为100微克/千克体重的大肠埃希氏菌脂多糖。每次处理中的另一半猪注射无菌盐溶液,浓度为100微克/千克体重。这种安排导致了以饮食和LPS挑战为主要效果的2x2析因设计。攻击后0、2、4和12小时收集血液样本和直肠温度数据。攻击后4小时和12小时LPS注射导致直肠温度升高( P <0.05)。 LPS刺激的结果也升高了血清皮质醇,IGF-1和TNF-α的浓度( P <0.05)。 COS处理导致攻击后2 h皮质醇浓度较低,攻击后4 h IGF-1浓度较高( P <0.05)。当表现出COS效应时,在皮质醇和IGF-1上也观察到COS和LPS的相互作用( P <0.05)。在整个攻击期间,肝珠蛋白的浓度保持不变。攻击后2和4小时,经LPS处理的猪白细胞计数增加( P <0.01)。 LPS攻击的结果是,在攻击后2小时,淋巴细胞计数增加,而在攻击后12小时,淋巴细胞计数减少( P <0.05)。然而,在整个攻击期间,没有观察到COS对淋巴细胞计数的主要作用。两种LPS挑战疗法之间的比较还表明,COS治疗对直肠温度,皮质醇和IGF-1浓度具有有益作用。总之,日粮中添加COS对断奶仔猪的营养物质消化率和炎性应激指标影响很小。

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