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基于先进螯合技术的痕量矿物质通过调节 NF-κB 和 Nrf2 通路来减少感染艾美尔球虫的肉鸡的炎症和氧化应激。

Advanced chelate technology-based trace minerals reduce inflammation and oxidative stress in Eimeria-infected broilers by modulating NF-kB and Nrf2 pathways.

机构信息

Department of Animal Science, Faculty of Agriculture, Ilam University, Ilam, Iran.

Department of Animal Science, Faculty of Agriculture and Environment, Arak University, Arak, 38156-8-8349, Iran.

出版信息

Sci Rep. 2024 Oct 16;14(1):24227. doi: 10.1038/s41598-024-75695-5.

Abstract

This study investigated the effects of substituting inorganic trace minerals (ITM) with advanced chelate technology-based TM (ACTM) in broiler chicken feed on productive performance, metabolic profile, humoral immunity, antioxidant status, and modulation of NF-kB and Nrf2 signaling pathways in mixed Eimeria species exposure. The study involved 480 newly hatched male broiler chickens, which were divided into 5 treatment groups, each with 6 replicate cages and 16 chickens per replicate. The experimental treatments included an uninfected negative control group fed a basal diet with recommended inorganic TM levels (NC), an infected positive control group fed the same diet (PC), a PC group supplemented with salinomycin (SAL), and two PC groups in which the basal diet was replaced with 50% and 100% ACTM instead of inorganic TM (ACTM50 and ACTM100, respectively). All groups, except for the NC group, were orally challenged with mixed Eimeria species oocysts on day 14. According to the results, the PC group showed lower feed intake, breast yield, low-density lipoprotein-cholesterol concentration, lactobacillus spp. counts, and serum IgG levels, but higher jejunal TGF-β expression versus the NC group. The broilers in the NC, SAL, and ACTM100 groups showed higher body weight gain, carcass yield, and TGF-β expression, but lower serum alkaline phosphatase activity, ileal E. coli count, and jejunal expression levels of IL-1β, IL-6, IFN-γ, Nrf2, and SOD1 compared to the PC group, with the NC group having the highest body weight gain and lowest IL-1β and Nrf2 expression levels. Furthermore, the administration of ACTM100 treatment improved feed efficiency, increased serum iron, zinc, manganese, and copper levels, enhanced total antioxidant capacity and different antioxidant enzyme activities, and reduced malondialdehyde concentration. In conclusion, complete replacement of ITM with ACTM effectively protects broilers from Eimeria infection, with similar positive effects to SAL treatment in terms of productive performance and anti-inflammatory responses and better antioxidant responses and mineral availability.

摘要

本研究探讨了在感染混合艾美耳球虫的情况下,用先进螯合技术基础的 TM(ACTM)替代无机微量矿物质(ITM)对肉鸡饲料生产性能、代谢谱、体液免疫、抗氧化状态以及 NF-kB 和 Nrf2 信号通路的影响。该研究涉及 480 只刚孵化的雄性肉鸡,将其分为 5 个处理组,每组 6 个重复笼,每个重复笼 16 只鸡。实验处理包括未感染的阴性对照组(NC),用推荐的无机 TM 水平的基础日粮喂养;感染阳性对照组(PC),用相同的日粮喂养;PC 组用盐霉素(SAL)补充;PC 组用 50%和 100%的 ACTM 代替基础日粮中的无机 TM(ACTM50 和 ACTM100)。除 NC 组外,所有组在第 14 天用混合艾美耳球虫卵囊口服攻毒。结果显示,PC 组的采食量、胸肉产量、低密度脂蛋白胆固醇浓度、乳杆菌属计数和血清 IgG 水平较低,而空肠 TGF-β表达较高,与 NC 组相比。NC、SAL 和 ACTM100 组的肉鸡体重增加、胴体产量和 TGF-β表达较高,而血清碱性磷酸酶活性、回肠大肠杆菌计数和空肠 IL-1β、IL-6、IFN-γ、Nrf2 和 SOD1 表达水平较低,与 PC 组相比,NC 组体重增加最高,IL-1β和 Nrf2 表达水平最低。此外,用 ACTM100 处理提高了饲料效率,增加了血清铁、锌、锰和铜水平,增强了总抗氧化能力和不同抗氧化酶的活性,降低了丙二醛浓度。综上所述,用 ACTM 完全替代 ITM 可有效保护肉鸡免受艾美耳球虫感染,在生产性能和抗炎反应方面与 SAL 处理具有相似的积极作用,在抗氧化反应和矿物质利用率方面效果更好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2887/11484868/3865a52bff75/41598_2024_75695_Fig1_HTML.jpg

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