Department of Public Health, College of Veterinary Medicine, King Faisal University, P.O. Box: 400, Hofuf, Al-Ahsa, 31982, Saudi Arabia.
Department of Microbiology, Faculty of Veterinary Medicine, Zagazig University, Zagazig, 44511, Egypt.
Fish Shellfish Immunol. 2023 Jul;138:108776. doi: 10.1016/j.fsi.2023.108776. Epub 2023 May 12.
Application of novel trend comprising antioxidant phytogenics is aiming to minimize the stress related factors and associated diseases in intensive fish culturing. Today, the concept of exploiting and protecting natural antioxidants represents a paradigm shift for the aqua feed industry. Therefore, our principal goal targeting liposome as a novel nanocarrier for curcumin is directed to attain superior performance, fillet antioxidant stability and bacterial resistance in Nile tilapia. A total of 500 Nile tilapia fingerlings (average body weight, 10.27 ± 0.10 g) assigned into five experimental groups in 25 glass aquaria of 120 L capacity at the density 20 fish/aquaria. The experimental groups were supplemented with varying doses of liposomal curcumin-NPs, LipoCur-NPs (0, 5, 15, 25 and 35 mg/kg diet) were reared for 12 weeks and later Streptococcus agalactiae (S. agalactiae) challenged model was performed. Inclusion of LipoCur-NPs (25 and 35 mg/kg diet) had the most prominent impact on Nile tilapia growth rate and feed conversion ratio. The immune boosting outcomes post supplementing 35 mg/kg diet of LipoCur-NPs were evidenced by higher myeloperoxidase, lysozyme and total immunoglobulin levels. Even after 4 weeks frozen storage, LipoCur-NPs at the dose of 35 mg/kg diet prominently increased (P < 0.05) the fillet scavenging capability for free radicals (1,1-diphenyl-2-picrylhydrazyl and 2,2'-Azino-bis (3-ethylbenzothiazoline-6-sulfonic acid) with an inverse reduction in lipid peroxidation biomarker (malondialdehyde). Notably, upregulation of GSH-Px, CAT, and SOD genes in fillet of 35 mg/kg LipoCur-NPs fed fish coordinated with higher T-AOC and lower oxidative markers (ROS and HO). Post S. agalactiae challenge, higher supplementation levels of LipoCur-NPs (35 mg/kg diet) greatly attenuated the expression of its vital virulence genes (cfb, fbsA and cpsA) with higher expression of Igm, CXC-chemokine and MHC genes. Concordantly, downregulation of inflammatory markers (IL-1β, TNF-α and IL-8) and upregulation of anti-inflammatory ones (IL-10 and TGF-β) were remarkably documented. Based on these findings, the innovative curcumin loaded liposome was considered a novel multitargeting alternative not only playing an imperative role in Nile tilapia growth promotion and fillet stability upon storage, but also protecting efficiently against S. agalactiae.
新型抗氧化植物营养素的应用旨在将应激相关因素和相关疾病最小化,以实现集约化鱼类养殖。如今,开发和保护天然抗氧化剂的概念代表了水产饲料行业的范式转变。因此,我们将姜黄素包封于脂质体作为新型纳米载体的主要目标是提高罗非鱼的性能、鱼片抗氧化稳定性和抗细菌能力。将 500 尾尼罗罗非鱼鱼苗(平均体重 10.27±0.10g)分配到 25 个 120L 容量的玻璃水族箱中,每个水族箱 20 条鱼。实验组分别补充不同剂量的载姜黄素脂质体纳米粒(LipoCur-NPs),LipoCur-NPs(0、5、15、25 和 35mg/kg 饲料)饲养 12 周,然后进行无乳链球菌(S. agalactiae)攻毒模型。在饲料中添加 25 和 35mg/kg 的 LipoCur-NPs 对尼罗罗非鱼的生长速度和饲料转化率有最显著的影响。补充 35mg/kg 饲料的 LipoCur-NPs 后的免疫增强效果表现为髓过氧化物酶、溶菌酶和总免疫球蛋白水平升高。即使经过 4 周的冷冻储存,在 35mg/kg 饲料剂量下,LipoCur-NPs 仍能显著提高鱼片清除自由基(1,1-二苯基-2-苦基肼和 2,2'-联氮-双(3-乙基苯并噻唑啉-6-磺酸)的能力,并降低脂质过氧化生物标志物(丙二醛)的水平。值得注意的是,在 35mg/kg LipoCur-NPs 喂养的鱼的鱼片组织中,GSH-Px、CAT 和 SOD 基因的上调与更高的 T-AOC 和更低的氧化标记物(ROS 和 HO)相协调。在无乳链球菌攻毒后,LipoCur-NPs 的高补充水平(35mg/kg 饲料)极大地减弱了其重要毒力基因(cfb、fbsA 和 cpsA)的表达,同时 Igm、CXC 趋化因子和 MHC 基因的表达增加。相应地,炎症标志物(IL-1β、TNF-α 和 IL-8)的下调和抗炎标志物(IL-10 和 TGF-β)的上调也得到了显著记录。基于这些发现,负载姜黄素的新型脂质体被认为是一种新型的多靶点替代物,不仅在罗非鱼的生长促进和储存期间的鱼片稳定性方面发挥着重要作用,而且还能有效地抵抗无乳链球菌。