幼年尼罗罗非鱼(Oreochromis niloticus)在受到物理应激挑战后对膳食补充免疫调节剂和不同水平维生素的血液免疫反应。

Brazilian journal of veterinary medicine Pub Date : 2024-07-17 eCollection Date: 2024-01-01 DOI:10.29374/2527-2179.bjvm001124
Domickson Silva Costa, Scheila Anelise Pereira Dutra, Iracema Lima Pereira, Lucas Cardoso, Paula Brando de Medeiros, Liseth Vanessa Perenguez Riofrio, Maria Clara Miguel Libanori, Thiago Augusto Soligo, Eduardo Yamashita, Ulisses de Pádua Pereira, José Luiz Pedreira Mourinõ, Maurício Laterça Martins
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摘要

在本研究中,我们分析了在尼罗罗非鱼(Oreochromis niloticus)暴露于物理应激后,日粮中补充免疫调节剂(β-葡聚糖 + 核苷酸)和不同水平的维生素对其血液免疫学的影响。实验采用了以下四种日粮处理:维生素含量(Vitind)、维生素+免疫调节剂(Vitind+Immune)、高维生素含量(Vithigh)和维生素+免疫调节剂(Vithigh+Immune)的日粮。实验包括 28 个鱼缸(20 个鱼缸-1)中的 560 条鱼,每个处理有 7 个重复。补充 60 天后,水温设定为 20 °C,并进行完整的生物测定。然后对动物施加物理压力,温度波动范围为 20 ºC 至 30 ºC/30 ºC 至 20 ºC/20 ºC 至 30 ºC。应激后收集 140 只动物的血液免疫数据。未摄入免疫调节剂的鱼抗菌滴度和血浆总蛋白水平(分别为 2.88 ± 0.43 log2 和 26.81 ± 4.01 mg∙mL-1)明显高于摄入免疫调节剂的鱼。相反,与维生素水平较高的鱼类相比,维生素水平较低的鱼类的凝集滴度增加(3.33 ± 0.66 log2)。在喂食同时添加维生素和免疫调节剂的鱼类时,可观察到免疫球蛋白水平升高,这表明免疫调节剂与膳食维生素水平之间存在相互作用。总之,在膳食中添加免疫调节剂可增强动物对身体应激的抵抗力,改善血液免疫参数。此外,膳食中维生素含量高并不会调节动物的免疫反应。
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Hematoimmunological responses of juvenile Nile tilapia (Oreochromis niloticus) receiving the dietary supplementation of immunomodulators and different levels of vitamins after challenge with physical stress.

In this study, we analyzed the hematoimmunological effects of dietary supplementation with immunomodulators (β-glucans + nucleotides) and different levels of vitamins on Nile tilapia (Oreochromis niloticus) after exposure to physical stress. The following four diet treatments were used: diets with indicated vitamin levels (Vitind), diets with Vitind + immunomodulator (Vitind + Immune), diets with high vitamin content (Vithigh), and those with Vithigh + immunomodulator (Vithigh + Immune). The experiment included 560 fish in 28 tanks (20 fish tank-1), with seven replicates per treatment. After 60 days of supplementation, the water temperature was set at 20 °C, and complete biometrics were performed. The animals were then subjected to physical stress with temperature oscillations of 20 ºC to 30 ºC/30 ºC to 20 ºC/20 ºC to 30 ºC. Hematoimmunological data from 140 animals were collected post-stress. Antimicrobial titer and total plasma protein levels were significantly higher in fish not receiving immunomodulator-supplemented diets (2.88 ± 0.43 log2 and 26.81 ± 4.01 mg∙mL-1, respectively) than in those that did. Conversely, the agglutination titer increased in fish fed with lower vitamin levels (3.33 ± 0.66 log2) compared to those with higher vitamin levels. Increased immunoglobulin levels were observed in fish fed diets co-supplemented with vitamins and immunomodulators, revealing an interaction between immunomodulators and dietary vitamin levels. In summary, the inclusion of immunomodulators in the diet enhanced the animals' resistance to physical stress and improved hematoimmunological parameters. Additionally, a high vitamin content in the diet did not modulate the immune responses in the animals.

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