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Changes in the metabolome of rats after exposure to arginine and N-carbamylglutamate in combination with diquat, a compound that causes oxidative stress, assessed by H-1 NMR spectroscopy

机译:H-1 NMR光谱法评估精氨酸和N-氨基甲酰基谷氨酸与敌草快合用后,大鼠体内代谢组的变化,敌草快是引起氧化应激的化合物

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Numerous factors can induce oxidative stress in animal production and lead to growth retardation, disease, and even death. Arginine and N-carbamylglutamate can alleviate the effects of oxidative stress. However, the systematic changes in metabolic biochemistry linked to oxidative stress and arginine and N-carbamylglutamate treatment remain largely unknown. This study aims to examine the effects of arginine and N-carbamylglutamate on rat metabolism under oxidative stress. Thirty rats were randomly divided into three dietary groups (n = 10 each). The rats were fed a basal diet supplemented with 0 (control), 1% arginine, or 0.1% N-carbamylglutamate for 30 days. On day 28, the rats in each treatment were intraperitoneally injected with diquat at 12 mg per kg body weight or sterile solution. Urine and plasma samples were analyzed by metabolomics. Compared with the diquat group, the arginine + diquat group had significantly lower levels of acetamide, alanine, lysine, pyruvate, tyrosine, a-glucose, and beta-glucose in plasma; N-carbamylglutamate + diquat had higher levels of 3-hydroxybutyrate, 3-methylhistidine, acetone, allantoin, asparagine, citrate, phenylalanine, trimethylamine-N-oxide, and tyrosine, and lower levels of low density lipoprotein, lipid, lysine, threonine, unsaturated lipid, urea, and very low density lipoprotein (P < 0.05) in plasma. Compared with the diquat group, the arginine + diquat group had significantly higher levels of citrate, creatinine, homogentisate, and a-ketoglutarate while lower levels of acetamide, citrulline, ethanol, glycine, isobutyrate, lactate, malonate, methymalonate, N-acetylglutamate, N-methylnicotinamide, propionate, and beta-glucose (P < 0.05) in urine. Compared with the diquat group, the N-carbamylglutamate + diquat group had significantly higher levels of allantoin, citrate, homogentisate, phenylacetylglycine, a-ketoglutarate, and beta-glucose while lower levels of acetamide, acetate, acetone, benzoate, citrulline, ethanol, hippurate, lactate, N-acetylglutamate, nicotinamide, ornithine, and trigonelline (P < 0.05) in urine. Overall, these results suggest that arginine and N-carbamylglutamate can alter the metabolome associated with energy metabolism, amino acid metabolism, and gut microbiota metabolism under oxidative stress.
机译:许多因素会在动物生产中诱发氧化应激,并导致发育迟缓,疾病甚至死亡。精氨酸和N-氨基甲酰基谷氨酸可减轻氧化应激的影响。然而,与氧化应激以及精氨酸和N-氨基甲酰基谷氨酸盐处理有关的代谢生物化学的系统变化仍然未知。本研究旨在探讨精氨酸和N-氨基甲酰基谷氨酸对氧化应激下大鼠新陈代谢的影响。将三十只大鼠随机分为三个饮食组(每组n = 10)。给大鼠喂食补充0(对照),1%精氨酸或0.1%N-氨甲酰谷氨酸的基础饮食,持续30天。在第28天,在每种治疗中的大鼠腹膜内注射敌草快,剂量为每公斤体重12 mg或无菌溶液。通过代谢组学分析尿液和血浆样品。与敌草快组相比,精氨酸+敌草快组血浆中的乙酰胺,丙氨酸,赖氨酸,丙酮酸,酪氨酸,α-葡萄糖和β-葡萄糖水平明显降低。 N-氨基甲酰谷氨酸+敌草快的3-羟基丁酸酯,3-甲基组氨酸,丙酮,尿囊素,天冬酰胺,柠檬酸,苯丙氨酸,三甲胺-N-氧化物和酪氨酸含量较高,而低密度脂蛋白,脂质,赖氨酸,苏氨酸,血浆中的不饱和脂质,尿素和极低密度脂蛋白(P <0.05)。与敌草快组相比,精氨酸+敌草快组的柠檬酸,肌酐,尿黑酸和α-酮戊二酸水平显着较高,而乙酰胺,瓜氨酸,乙醇,甘氨酸,异丁酸,乳酸,丙二酸,甲基丙二酸,N-乙酰谷氨酸,尿液中的N-甲基烟酰胺,丙酸酯和β-葡萄糖(P <0.05)。与敌草快组相比,N-氨基甲酰基谷氨酸+敌草快组的尿囊素,柠檬酸盐,高纯尿酸盐,苯乙酰基甘氨酸,α-酮戊二酸和β-葡萄糖的含量明显较高,而乙酰胺,乙酸盐,丙酮,丙酮,苯甲酸盐,瓜氨酸,乙醇,尿液中的马尿酸盐,乳酸盐,N-乙酰谷氨酸盐,烟酰胺,鸟氨酸和曲安奈林(P <0.05)。总的来说,这些结果表明精氨酸和N-氨基甲酰基谷氨酸可以改变在氧化应激下与能量代谢,氨基酸代谢和肠道菌群代谢相关的代谢组。

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