Center for Excellence in Food and Metabolism, Institute for Medical Research, University of Belgrade, 11000 Belgrade, Serbia.
Faculty of Veterinary Medicine, University of Belgrade, 11000 Belgrade, Serbia.
Biomolecules. 2022 Aug 8;12(8):1092. doi: 10.3390/biom12081092.
The synthesis, degradation, and reconstruction of the cell membrane as a metabolic pathway of phospholipids is a constant and dynamic process. Fatty acids as bioactive lipid components of plasma and erythrocyte phospholipids as structural lipids have biological roles in the integrity of cell membranes. Fatty acids, depending on the chain length, the degree of saturation, and the synthesis pathways, can alleviate inflammation and oxidative stress caused by excessive exercise. Considering that changing food intake or diet can influence fatty acid phospholipid metabolism, our study aimed to determine the potential benefits of fish-based diets in working (police) dogs undergoing intensive training concerning bioactive lipids such as fatty acids, phospholipids of plasma, and erythrocytes. Fatty acid esters' composition of plasma and erythrocyte phospholipids as a bioactive lipids, in addition to markers of oxidative stress and metabolic parameters, were analysed by GC chromatography. The food was well tolerated by all dogs, and the compliance to the diet was high throughout the study. After the treatment with fish-based food, blood glucose, total, and LDL cholesterol levels were significantly reduced, indicating positive biochemical profiles of dogs. Correlations of fatty acid phospholipid compositions between plasma and erythrocytes have shown that both plasma and erythrocytes could represent markers of omega-3 eicosapentaenoic and docosahexaenoic acid intake levels in dogs. Morover, fish-based food supplementation caused a significant reduction in lipid peroxidation markers. The enrichment of dogs' diets with marine fish could improve oxidative status and improve roles and status of bioactive lipids, such as membrane phospholipids and fatty acids, as its components in plasma and erythrocytes in police dogs exposed to intensive exercise.
细胞膜的合成、降解和重建作为磷脂的代谢途径是一个持续而动态的过程。作为血浆和红细胞磷脂结构脂质的生物活性脂质成分,脂肪酸在细胞膜的完整性中具有生物学作用。脂肪酸根据链长、饱和度和合成途径,可以缓解过度运动引起的炎症和氧化应激。考虑到改变食物摄入或饮食可以影响脂肪酸磷脂代谢,我们的研究旨在确定富含鱼类的饮食对接受强化训练的工作(警犬)的潜在益处,这些警犬涉及到生物活性脂质,如脂肪酸、血浆和红细胞磷脂。通过 GC 色谱分析了血浆和红细胞磷脂中脂肪酸酯的组成作为生物活性脂质,以及氧化应激和代谢参数的标志物。所有狗都能很好地耐受这种食物,并且在整个研究过程中对饮食的依从性都很高。在用富含鱼类的食物治疗后,血糖、总胆固醇和 LDL 胆固醇水平显著降低,表明狗的生化指标良好。血浆和红细胞中脂肪酸磷脂组成的相关性表明,血浆和红细胞都可以作为犬摄入ω-3 二十碳五烯酸和二十二碳六烯酸水平的标志物。此外,富含鱼类的食物补充剂显著降低了脂质过氧化标志物。在犬类饮食中添加海洋鱼类可以改善氧化状态,并改善生物活性脂质(如膜磷脂和脂肪酸)的作用和地位,因为它们是暴露于高强度运动的警犬血浆和红细胞中的成分。