El-Sharawy Mohamed E, Hamouda Mohamed, Soliman Ali A, Amer Asem A, El-Zayat Ahmed M, Sewilam Hani, Younis Elsayed M, Abdel-Warith Abdel-Wahab A, Dawood Mahmoud A O
Department of Animal Production, Faculty of Agriculture, Kafrelsheikh University, 33516 Kafrelsheikh, Egypt.
Central Laboratory for Aquaculture Research, Abbassa, Sharkia, Sakha Aquaculture Research Unit, Kafrelsheikh, Egypt.
Saudi J Biol Sci. 2021 Dec;28(12):7241-7247. doi: 10.1016/j.sjbs.2021.08.023. Epub 2021 Aug 13.
Selenium (Se) is a multifunctional trace element required in specific amounts for the optimal growth of aquatic finfish species. For this reason, this study investigated the effect of Se nanoparticles on the growth behavior, antioxidative capacity, and liver wellbeing of Striped catfish (). Striped catfish fed varying Se nanoparticles levels (0. 0.5, 1, and 2 mg/kg) in triplicate units and kept for 60 days. Striped catfish delivered dietary Se nanoparticles had markedly increased growth performance, specific growth rate (SGR), consumed feed, and protein efficiency ratio but reduced feed conversion ratio (FCR). The whole body, liver, muscle, and gills have higher Se accumulation levels in fish that received Se nanoparticles than the control with the highest level in fish fed 2 mg/kg. The carcass composition showed higher protein content in fish fed 1 and 2 mg/kg ( = 0.001 and 0.001) and higher ash content ( = 0.001 and 0.002) in fish fed 2 mg/kg than the remaining groups. Superoxide dismutase was meaningfully activated in Striped catfish delivered 1 and 2 mg Se nanoparticles/kg compared with the control ( < 0.05). Also, catalase and glutathione peroxidase activities were higher, and malondialdehyde level was lower in Striped catfish fed Se nanoparticles at 0.5, 1, and 2 mg/kg than the control ( < 0.05). The villi exhibited a visible increase in both height and branching with an increased level of Se nanoparticles in addition to the increased number of goblet cells. The Se nanoparticles-treated fish revealed dose-dependent modifications fluctuated from diffuse fatty vacuolization in hepatocytes with eccentric pyknotic hepatocytes nuclei. In conclusion, Se nanoparticles are required for the optimum growth behavior, antioxidative capacity, and liver wellbeing of Striped catfish. Based on SGR and FCR data's regression analysis, Se nanoparticles are recommended at 1.02-1.11 mg/kg diet.
硒(Se)是一种多功能微量元素,水生硬骨鱼类的最佳生长需要特定量的硒。因此,本研究调查了纳米硒对条纹鲶鱼生长行为、抗氧化能力和肝脏健康的影响。条纹鲶鱼以三个重复单位投喂不同水平的纳米硒(0、0.5、1和2毫克/千克),并饲养60天。投喂纳米硒的条纹鲶鱼生长性能、特定生长率(SGR)、摄食量和蛋白质效率显著提高,但饲料转化率(FCR)降低。与对照组相比,接受纳米硒的鱼的全身、肝脏、肌肉和鳃中的硒积累水平更高,其中投喂2毫克/千克纳米硒的鱼体内硒积累水平最高。胴体组成显示,投喂1和2毫克/千克纳米硒的鱼的蛋白质含量更高(P = 0.001和0.001),投喂2毫克/千克纳米硒的鱼的灰分含量更高(P = 0.001和0.002)。与对照组相比,投喂1和2毫克/千克纳米硒的条纹鲶鱼体内超氧化物歧化酶被显著激活(P < 0.05)。此外,投喂0.5、1和2毫克/千克纳米硒的条纹鲶鱼体内过氧化氢酶和谷胱甘肽过氧化物酶活性更高,丙二醛水平更低(P < 0.05)。随着纳米硒水平的增加,绒毛的高度和分支明显增加,杯状细胞数量也增加。经纳米硒处理的鱼显示出剂量依赖性变化,从肝细胞中弥漫性脂肪空泡化到核固缩的偏心肝细胞核。总之,纳米硒是条纹鲶鱼最佳生长行为、抗氧化能力和肝脏健康所必需的。基于SGR和FCR数据的回归分析,建议在饲料中添加1.02 - 1.11毫克/千克的纳米硒。