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水飞蓟素对霉菌毒素污染肉鸡饲料的保护作用:生长性能、肉的抗氧化状态和脂肪酸谱。

Protective effects of silymarin in broiler feed contaminated by mycotoxins: growth performance, meat antioxidant status, and fatty acid profiles.

机构信息

Graduate Program in Animal Science, University of the State of Santa Catarina (UDESC), Chapecó, SC, Brazil.

Department of Animal Science, UDESC, Chapecó, SC, Brazil.

出版信息

Trop Anim Health Prod. 2021 Aug 19;53(4):442. doi: 10.1007/s11250-021-02873-2.

Abstract

The aim of this study was to determine whether the inclusion of silymarin in broiler feed was able to mitigate the adverse effects of mycotoxin on growth performance, health status, liver oxidative stress, and meat fatty acid profiles. A completely randomized design with four treatments, four repetitions, and 15 chicks per repetition was used, with the following groups: (a) feed without additives (NoMyc-NoSil), (b) feed supplemented with silymarin (NoMyc-Sil), (c) feed contaminated with mycotoxin (Myc-NoSil), and (d) feed contaminated with mycotoxin and supplemented with silymarin (Myc-Sil). Growth performance, intestinal and liver health, and meat quality were assessed. The consumption of feed contaminated with mycotoxin delayed weight gain and increased the feed conversion ratio; however, the addition of silymarin prevented these adverse effects on the chicken industry. Serum ALT activity was higher in Myc-NoSil broilers than in other groups. Intake of silymarin in healthy birds increased serum globulin concentration and reduced albumin concentration and ALT and AST serum activities compared to the Myc-NoSil group. The NoMyc-Sil birds had greater villus heights and crypt depths. Luminosity and water loss by cooking were affected by mycotoxin ingestion, changes that did not occur in the meat of birds that were supplemented with silymarin. The sum of saturated and monounsaturated fatty acids in the meat did not change among treatments, unlike the sum of polyunsaturated fatty acids higher in the meat of birds that consumed silymarin. We conclude that silymarin is a potential additive in broiler feed; it reduces impairment of growth performance at the end of the productive cycle, prevents oxidative stress, improves meat quality, and increases polyunsaturated fatty acids.

摘要

本研究旨在确定在肉鸡饲料中添加水飞蓟素是否能够减轻霉菌毒素对生长性能、健康状况、肝脏氧化应激和肉脂肪酸谱的不利影响。采用完全随机设计,设 4 个处理、4 个重复,每个重复 15 只鸡,分为 4 组:(a)无添加剂饲料(NoMyc-NoSil),(b)添加水飞蓟素的饲料(NoMyc-Sil),(c)受霉菌毒素污染的饲料(Myc-NoSil),(d)受霉菌毒素污染并添加水飞蓟素的饲料(Myc-Sil)。评估生长性能、肠道和肝脏健康以及肉质。摄入受霉菌毒素污染的饲料会延迟体重增加并提高饲料转化率;然而,添加水飞蓟素可防止这些对养鸡业的不利影响。Myc-NoSil 肉鸡的血清 ALT 活性高于其他组。与 Myc-NoSil 组相比,健康鸟类摄入水飞蓟素会增加血清球蛋白浓度并降低白蛋白浓度以及 ALT 和 AST 血清活性。NoMyc-Sil 组的绒毛高度和隐窝深度更大。霉菌毒素摄入会影响肉的亮度和蒸煮时的水分损失,但添加水飞蓟素的鸡的肉不会发生这些变化。肉中饱和和单不饱和脂肪酸的总和在各处理之间没有变化,而摄入水飞蓟素的鸡的肉中多不饱和脂肪酸的总和更高。我们得出的结论是,水飞蓟素是肉鸡饲料的一种潜在添加剂;它可减少生产周期结束时生长性能的受损,预防氧化应激,改善肉质,并增加多不饱和脂肪酸。

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