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首页> 外文期刊>Aquaculture >Dietary supplementation with nerolidol nanospheres improves growth, antioxidant status and fillet fatty acid profiles in Nile tilapia: Benefits of nanotechnology for fish health and meat quality
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Dietary supplementation with nerolidol nanospheres improves growth, antioxidant status and fillet fatty acid profiles in Nile tilapia: Benefits of nanotechnology for fish health and meat quality

机译:尼罗酚纳米球的膳食补充剂可提高尼罗罗非鱼的生长,抗氧化状态和圆角脂肪酸谱:鱼类健康和肉质纳米技术的益处

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摘要

Sustainable development of aquaculture is a compelling approach to increasing global fish production and to improve human nutrition and food security. In particular, Nile tilapia (Oreochromis niloticus) is a widely distributed species that may meet the growing demand for fish by an ever-increasing human population. Management of fish health is a major concern in aquaculture, and strategies incorporating natural products have been proposed to promote fish growth and health. In this context, the aim of this study was to evaluate whether dietary supplementation with free or nanoencapsulated nerolidol improves performance, meat antioxidant status and fillet fatty acid profiles of Nile tilapia. Final body weight and growth rate were significantly higher in fish fed with diets containing 1.0 mL nanoencapsulated nerolidol/kg of feed compared to the control group, while meat reactive oxygen species and lipid peroxidation levels were lower. Meat antioxidant capacity against peroxyl radical was significant lower in fish fed with diets containing 0.5 and 1.0 mL nanoencapsulated nerolidol/kg of feed than in the control group. Meat catalase activity was significant higher in fish fed with a diet containing 1.0 mL free nerolidol/kg of feed and in fish fed with diets containing 0.5 and 1.0 mL nanoencapsulated nerolidol/kg of feed than in the control group, while the levels of hydrogen peroxide were lower in the same groups. Finally, the total content of saturated fatty acids (SFA) in meat were lower in fish fed with all nerolidol diets (0.5 and 1.0 mL of free or nanoencapsulated nerolidol) than in the control group, while the total content of monounsaturated fatty acids (MUFA) was higher in the same groups. No significant difference was observed between groups with respect to meat protein carbonylation levels, superoxide dismutase activity, or total content of polyunsaturated fatty acids. These data suggest that nanoencapsulation of nerolidol promotes fish health by promoting growth and reducing free radical production and lipid damage. Free and (particularly) nanoencapsulated nerolidol enhanced muscle/meat enzymatic and non-enzymatic antioxidant systems. Both supplementation forms improved meat quality via reduction of SFA and increase of MUFA, making dietary supplementation with nanoencapsulated nerolidol a compelling approach to improve fish health and meat quality.
机译:水产养殖的可持续发展是增加全球鱼类生产和改善人类营养和粮食安全的令人信服的方法。特别是,尼罗罗非鱼(Oreochromis Niloticus)是一种广泛分布的物种,可以通过不断增加的人口满足对鱼类不断增长的需求。鱼卫生管理是水产养殖中的一个主要问题,并提出了纳入天然产品的策略,以促进鱼类生长和健康。在这种情况下,本研究的目的是评估是否具有自由或纳米载的诺罗酚的膳食补充剂,提高了尼罗罗非鱼的性能,肉类抗氧化状态和圆角脂肪酸谱。与对照组相比,用含有1.0ml纳米载萘酚/ kg饲料的饮食喂食的鱼类的最终体重和生长速率显着高,而肉类反应性氧物质和脂质过氧化水平较低。在含有含有0.5和1.0ml纳米载的鼻酰胺/ kg饲料的饮食中饲喂的鱼类含有含有0.5和1.0ml纳米载饲料的肉类抗氧化能力。在含有含有1.0mL游离的Nerolidol / kg饲料和含有0.5和1.0ml纳米载的鼻烷/ kg饲料的饮食中的饮食中的鱼类饲料含有饮食的鱼类含量显着高于对照组,而过氧化氢水平在相同的群体中较低。最后,肉类中饱和脂肪酸(SFA)的总含量在喂食所有Nerolidol饮食(0.5-1.0mL游离或纳米载萘醇)中的鱼中较低,而单个饱和脂肪酸的总含量(MUFA )在相同的群体中更高。在相对于肉蛋白质羰基化水平,超氧化物歧化酶活性或多不饱和脂肪酸的总含量之间没有观察到显着差异。这些数据表明,Nerolidol的纳米型化通过促进生长和减少自由基产生和脂质损伤来促进鱼类健康。自由和(特别是)纳米淀粉的鼻子增强肌肉/肉类酶和非酶促抗氧化系统。通过降低SFA和MuFA的增加,均补充能够改善肉质,使膳食补充具有纳米载的诺罗酚一种提高鱼类健康和肉质的令人兴奋的方法。

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