Central Laboratory for Aquaculture Research, Abbassa, Abou-Hammad, Sharkia, Egypt.
Department of Animal Nutrition and Nutritional Deficiency Diseases, Faculty of Veterinary Medicine, Mansoura University, Mansoura, Egypt.
Biol Trace Elem Res. 2023 Oct;201(10):4900-4911. doi: 10.1007/s12011-023-03570-x. Epub 2023 Feb 6.
The goal of the current study was to compare how well Nile tilapia, Oreochromis niloticus, utilized copper (Cu) as bulk and nano sources by evaluating fish growth, body indices, hematological assays, plasma metabolites, immune and anti-oxidative abilities, and intestinal morphometric measurements. The basal diet served as a control, with no Cu added, whereas the experimental diets were formed by adding bulk-Cu and nano-Cu to the basal diet to keep Cu levels at 3 and 6 mg kg, respectively, in both Cu sources. Tilapia (9.10 ± 0.014 g) were fed the control diet and four experimental diets for 12 weeks. Results indicated that growth, feed utilization, and body indices demonstrated a substantial improvement (P ≤ 0.05) in tilapia that received a diet containing 3 and 6 Nano-Cu mg kg diet, compared to the performance of fish that received diets containing 3 and 6 Bulk-Cu mg kg diet and the control diet. Villi height, villi width, absorption area of villous (AAV), and mucosal to serosal amplification ratio (MSR) values demonstrated a substantial increase (P ≤ 0.05) in tilapia fed 3 and 6 mg kg Nano-Cu compared to the values observed in fish fed the control and Bulk-Cu supplemented diets. Fish fed Bulk-Cu recorded the highest (P ≤ 0.05) hemoglobin concentration in those fed 6 mg kg compared to 3 mg kg. Hematocrit value considerably improved (P ≤ 0.05) by supplementation of Cu, whereas the highest significant value demonstrated in fish provided 6 mg/kg Nano-Cu. A fish-fed diet containing 3 mg kg Nano-Cu revealed the best (P ≤ 0.05) values of plasma albumin, total protein, and globulins. Plasma HDL-C highest concentrations (P ≤ 0.05) were reported in fish fed diet supplemented with 6 mg/kg either Bulk or Nano Cu, whereas values of plasma TG and VLDL-C declined as Cu supplementation level increased either from Bulk or Nano source. Also, the best (P ≤ 0.05) values of CAT and GPX were seen in fish given diet supplemented with 6 Nano-Cu mg/kg. Fillets of fish-fed Nano-Cu-supplemented diets showed a marked decline (P ≤ 0.05) in moisture and fat contents, while crude protein, ash, and Cu contents considerably increased in the fillet by dietary supplementation of Nano-Cu at both levels 3 and 6 mg kg. In conclusion, the supplemental diets with 3 or 6 Nano-Cu mg/kg enhanced growth, feed utilization, body indices, fillet nutrient composition, hematological assay, plasma metabolites, immune, antioxidant activities, and intestinal morphometry of Nile tilapia.
本研究的目的是比较尼罗罗非鱼(Oreochromis niloticus)对铜(Cu)作为大块和纳米源的利用情况,通过评估鱼类的生长、体指数、血液学分析、血浆代谢物、免疫和抗氧化能力以及肠道形态测量。基础饮食作为对照,不添加 Cu,而实验饮食则通过在基础饮食中添加大块-Cu 和纳米-Cu 将 Cu 水平分别保持在 3 和 6mg/kg,在两种 Cu 来源中均为 3 和 6mg/kg。将 9.10 ± 0.014g 的罗非鱼用对照饲料和四种实验饲料喂养 12 周。结果表明,与接受 3 和 6mg/kg 大块-Cu 饲料和对照饲料的鱼类相比,摄入含有 3 和 6mg/kg 纳米-Cu 的饲料的罗非鱼的生长、饲料利用率和体指数均有显著提高(P≤0.05)。与接受对照和大块-Cu 补充饲料的鱼类相比,3 和 6mg/kg 纳米-Cu 组罗非鱼的绒毛高度、绒毛宽度、绒毛吸收面积(AAV)和粘膜-浆膜放大率(MSR)值显著增加(P≤0.05)。与 3mg/kg 相比,6mg/kg 组的血红蛋白浓度显著升高(P≤0.05)。添加 Cu 可显著提高血细胞比容值(P≤0.05),而在给予 6mg/kg 纳米-Cu 的鱼类中观察到最高显著值。摄入 3mg/kg 纳米-Cu 的鱼类表现出最佳(P≤0.05)的血浆白蛋白、总蛋白和球蛋白值。在补充 6mg/kg 无论是大块还是纳米 Cu 的饮食中,鱼类的血浆高密度脂蛋白胆固醇(HDL-C)浓度最高(P≤0.05),而随着 Cu 补充水平的增加,无论是来自大块还是纳米来源,血浆甘油三酯(TG)和极低密度脂蛋白胆固醇(VLDL-C)的浓度都有所下降。同样,在给予 6mg/kg 纳米-Cu 的饮食中,CAT 和 GPX 的最佳(P≤0.05)值出现在鱼类中。摄食纳米-Cu 补充饮食的鱼片水分和脂肪含量明显下降(P≤0.05),而粗蛋白、灰分和 Cu 含量在鱼片的饮食补充中均有显著增加,在 3 和 6mg/kg 纳米-Cu 水平下均有增加。总之,补充 3 或 6mg/kg 的纳米-Cu 可以提高尼罗罗非鱼的生长、饲料利用率、体指数、鱼片营养成分、血液学分析、血浆代谢物、免疫、抗氧化活性和肠道形态。