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酵母和微藻来源的β-葡聚糖对金头鲷幼鱼免疫状态和肝抗氧化能力的影响。

Immune Status and Hepatic Antioxidant Capacity of Gilthead Seabream Juveniles Fed Yeast and Microalga Derived β-glucans.

机构信息

SPAROS Lda., Área Empresarial de Marim, Lote C, 8700-221 Olhão, Portugal.

Centro Interdisciplinar de Investigação Marinha e Ambiental (CIIMAR), Universidade do Porto, Terminal de Cruzeiros de Leixões, Av. General Norton de Matos s/n, 4450-208 Matosinhos, Portugal.

出版信息

Mar Drugs. 2021 Nov 23;19(12):653. doi: 10.3390/md19120653.

Abstract

This work aimed to evaluate the effects of dietary supplementation with β-glucans extracted from yeast () and microalga () on gene expression, oxidative stress biomarkers and plasma immune parameters in gilthead seabream () juveniles. A practical commercial diet was used as the control (CTRL), and three others based on CTRL were further supplemented with different β-glucan extracts. One was derived from (diet MG) and two different extracts of 21% and 37% -derived β-glucans (defined as Phaeo21 and Phaeo37), to give a final 0.06% β-glucan dietary concentration. Quadruplicate groups of 95 gilthead seabream (initial body weight: 4.1 ± 0.1 g) were fed to satiation three times a day for 8 weeks in a pulse-feeding regimen, with experimental diets intercalated with the CTRL dietary treatment every 2 weeks. After 8 weeks of feeding, all groups showed equal growth performance and no changes were found in plasma innate immune status. Nonetheless, fish groups fed β-glucans supplemented diets showed an improved anti-oxidant status compared to those fed CTRL at both sampling points (i.e., 2 and 8 weeks). The intestinal gene expression analysis highlighted the immunomodulatory role of Phaeo37 diet after 8 weeks, inducing an immune tolerance effect in gilthead seabream intestine, and a general down-regulation of immune-related gene expression. In conclusion, the results suggest that the dietary pulse administration of a 37% enriched-β-glucans extract might be used as a counter-measure in a context of gut inflammation, due to its immune-tolerant and anti-oxidative effects.

摘要

本研究旨在评估酵母()和微藻()β-葡聚糖对金头鲷幼鱼基因表达、氧化应激生物标志物和血浆免疫参数的影响。使用实用的商业饮食作为对照(CTRL),并进一步用三种不同的β-葡聚糖提取物对其进行补充,其中一种来自(MG 饮食),另外两种分别为 21%和 37%的(定义为 Phaeo21 和 Phaeo37),最终β-葡聚糖的膳食浓度为 0.06%。95 尾初始体重为 4.1 ± 0.1 g 的金头鲷幼鱼分为 4 组,每组 24 尾,采用每日 3 次饱食投喂方式,8 周内进行脉冲式投喂,每两周用实验饲料与对照饲料交替投喂。8 周后,所有组均表现出相同的生长性能,且血浆固有免疫状态无变化。然而,与对照组相比,投喂添加β-葡聚糖的饲料组在两个采样点(即 2 周和 8 周)的抗氧化状态均有所改善。肠道基因表达分析突出了 Phaeo37 饮食在 8 周后的免疫调节作用,在金头鲷肠道中诱导免疫耐受效应,并普遍下调免疫相关基因表达。总之,结果表明,在肠道炎症的情况下,日粮脉冲式添加 37%β-葡聚糖可能作为一种应对措施,因为其具有免疫耐受和抗氧化作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4e0/8704051/dfe9d199c754/marinedrugs-19-00653-g001.jpg

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