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Response of broiler chickens fed diets supplemented with a bioactive olive pomace extract from Olea europaea to an experimental coccidial vaccine challenge

机译:肉鸡鸡喂养饮食的响应补充了从Olea Europaea的生物活性橄榄渣提取物到实验呼吸疫苗攻击

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摘要

This study aimed to investigate an experimental procedure of coccidial challenge in battery cages and the anticoccidial effect of a bioactive olive pomace extract from Olea europaea (OE) in broiler chickens. To this end, four hundred 1-day-old male chicks were randomly assigned to 5 experimental treatments (10 cages/treatment; 8 birds/cage). One group was fed the control diet without any additives and not challenged (NCU). The other 4 groups were challenged and fed the control diet with no additives (NCC) or supplemented with 500 ppm of coccidiostat or with 500 or 1,500 ppm of OE. At 0, 7, and 14 d, all challenged birds, except the NCC group, were orally gavaged with a live Eimeria spp. oocyst vaccine at 1x, 4x, and 16x of the manufacturer's recommended dose, respectively. Feed intake (FI), body weight gain (BWG), and feed conversion ratio (FCR) were determined at 7, 14, 20, and 28 d. At 20 d of age, 1 bird per cage was euthanized to analyze duodenum and jejunum morphology, ileal mucosa gene expression, and plasma cytokine, alpha-1-acid glycoprotein, and carotenoid (CAR) concentrations. Coccidial vaccine challenge lowered BW (P < 0.05) throughout the trial, and reduced FI and BWG, except from 20 to 28d, and increased FCR from 0 to 7, 0 to 14, and 0 to 20 d. Birds in the NCC group had higher (P < 0.05) oocyst counts and lower (P < 0.05) CAR and villus height to crypt depth ratios compared with NCU birds. Overall, coccidia challenge caused the expected reductions in growth performance and gut integrity. While the coccidiostat reduced oocysts excretion, dietary OE or coccidiostat had no effects on performance or gut integrity. The attenuated inflammatory response observed for all the treatments following the third infection can be attributed to the adaptation or immunization to the repetitive exposure to Eimeria spp.
机译:本研究旨在探讨电池笼中的益处理挑战的实验程序以及从肉鸡鸡肉(OE)的生物活性橄榄泡沫提取物的止痛性效果。为此,随机分配了四十天龄的雄性雏鸡(10个持续的实验治疗)(10个笼子/治疗; 8只鸟/笼子)。一组喂食控制饮食而没有任何添加剂,没有攻击(NCU)。另外4组受到攻击性并喂养对照饮食,没有添加剂(NCC),或补充500ppm的椰子胶蛋白或500或1,500ppm的OE。在0,7和14d,除了NCC组外,所有挑战的鸟类除了NCC组,均用活Eimeria SPP口头掌握。卵囊疫苗在1倍,4倍和16倍的制造商推荐剂量。进料进料(FI),体重增加(BWG)和进料转化比(FCR)在7,14,20和28d中测定。在20 d时,每笼1只鸟被安乐死,分析十二指肠和Jejunum形态,髂骨粘液基因表达和血浆细胞因子,α-1-酸糖蛋白和类胡萝卜素浓度。在整个试验过程中,可携带的疫苗攻击降低了BW(P <0.05),除外,除了20至28d之外,还减少FI和BWG,并将FCR增加到0至7,0至14和0至20天。与NCU鸟类相比,NCC组中的禽类患者患有更高(P <0.05)卵囊计数和较低(P <0.05)的汽车和绒毛高度,以隐窝深度比率。总体而言,可口可利的挑战导致预期的增长性能和肠道完整性降低。虽然Coccidiostat降低了卵囊排泄,但膳食OE或Coccidiostat对性能或肠道完整性没有影响。对于第三种感染后的所有治疗观察到的减毒炎症反应可归因于对Eimeria SPP的重复暴露的适应或免疫。

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