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首页> 外文期刊>Journal of Animal Physiology and Animal Nutrition >Effects of chitosan nanoparticle supplementation on growth performance, humoral immunity, gut microbiota and immune responses after lipopolysaccharide challenge in weaned pigs
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Effects of chitosan nanoparticle supplementation on growth performance, humoral immunity, gut microbiota and immune responses after lipopolysaccharide challenge in weaned pigs

机译:壳聚糖纳米粒子对断奶猪脂多糖攻击后生长性能,体液免疫,肠道微生物和免疫应答的影响

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In this study, we aimed to determine the effects of dietary supplementation with chitosan nanoparticles (CNP) on growth performance, immune status, gut microbiota and immune responses after lipopolysaccharide challenge in weaned pigs. A total of 144 piglets were assigned to four groups receiving different dietary treatments, including basal diets supplemented with 0, 100, 200 and 400 mg/kg CNP fed for 28 days. Each treatment group included six pens (six piglets per pen). The increase in supplemental CNP concentration improved the average daily gain (ADG) and decreased the feed and gain (F/G) and diarrhoea rate (p < .05). However, significant differences in the average daily feed intake (ADFI) among different CNP concentrations were not observed. CNP also increased plasma immunoglobulin (Ig)A and IgG, and C3 and C4 concentrations in piglets in a dose-dependent manner on day 28, whereas IgM concentration was not affected by CNP. A total of 24 piglets in the control diet and control diet with 400 mg/kg CNP supplementation groups were randomly selected for the experiment of immunological stress. Half of the pigs in each group (n = 6) were injected i.p. with Escherichia coli lipopolysaccharide (LPS) at a concentration of 100 mu g/kg. The other pigs in each group were injected with sterile saline solution at the same volume. Plasma concentrations of cortisol, prostaglandin E2 (PEG2), interleukin (IL)-6, tumour necrosis factor (TNF)-alpha and IL-1 beta dramatically increased after LPS challenge. However, CNP inhibited the increase in cortisol, PEG2, IL-6 and IL-1 beta levels in plasma, whereas TNF-alpha level slightly increased. Moreover, the effects of CNP on the gut microbiota were also evaluated. Our results showed that dietary supplementation with CNP modified the composition of colonic microbiota, where it increased the amounts of some presumably beneficial intestinal bacteria and suppressed the growth of potential bacterial pathogens. These findings suggested CNP supplementation improved the growth performance and immune status, alleviated immunological stress and regulated intestinal ecology in weaned piglets. Based on these beneficial effects, CNP could be applied as a functional feed additives supplemented in piglets diet.
机译:在这项研究中,我们旨在确定膳食补充与壳聚糖纳米粒子(CNP)对断奶猪的脂多糖攻击后生长性能,免疫状态,肠道微生物群和免疫应答的影响。共有144只仔猪分配到接受不同膳食处理的四组,包括补充有0,100,200和400mg / kg CNP的基础饮食28天。每组治疗组包括六支钢笔(每支笔六头仔猪)。补充CNP浓度的增加改善了平均每日增益(ADG)并降低了饲料和增益(F / g)和腹泻率(P <.05)。然而,未观察到不同CNP浓度之间的平均日饲料摄入量(ADFI)的显着差异。 CNP在第28天以剂量依赖性方式增加血浆免疫球蛋白(IG)A和IgG,C3和C4浓度,而IgM浓度不受CNP的影响。随机选择总共24只仔猪在控制饮食和控制饮食中,随机选择用于免疫应激的实验。每组中的一半猪(n = 6)注射I.P.用大肠杆菌脂多糖(LPS)以100μg/ kg的浓度。每组中的其他猪以相同的体积注射无菌盐水溶液。血浆浓度的皮质醇,前列腺素E2(PEG2),白细胞介素(IL)-6,肿瘤坏死因子(TNF) - 在LPS挑战后显着增加。然而,CNP抑制了血浆中皮质醇,PEG2,IL-6和IL-1β水平的增加,而TNF-α水平略有增加。此外,还评估了CNP对肠道微生物的影响。我们的研究结果表明,CNP的膳食补充剂改性了结肠微生物群的组成,其中增加了一些可能有益肠道细菌的量,并抑制了潜在的细菌病原体的生长。这些研究结果表明CNP补充剂改善了随后仔猪中的生长性能和免疫状态,缓解了免疫应激和受管制的肠道生态。基于这些有益效果,CNP可以作为补充仔猪饮食的功能性饲料添加剂。

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