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首页> 外文期刊>Journal of Nutritional Science and Vitaminology >The Effects of Glycine, L -Threonine, and L -Cystine Supplementation to a 9% Casein Diet on the Conversions of L -Tryptophan to Nicotinamide and to Serotonin in Rats
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The Effects of Glycine, L -Threonine, and L -Cystine Supplementation to a 9% Casein Diet on the Conversions of L -Tryptophan to Nicotinamide and to Serotonin in Rats

机译:补充9%酪蛋白饮食中的甘氨酸,L-苏氨酸和L-胱氨酸对大鼠L-色氨酸向烟酰胺和5-羟色胺转化的影响

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Nicotinamide and serotonin are synthesized from L -tryptophan in mammals. It is important to know the nutritional factors affecting the synthesis of nicotinamide and serotonin. We investigated the effects of amino acid composition. Young adult rats were fed ad libitum for 21 d a low-protein (9% casein) diet([1] control), or one of the low protein diets supplemented with following amino acids: [2] glycine, L -threonine, and L -cystine, [3] L -threonine and L -cystine, [4] glycine and L -cystine, and [5] glycine and L -threonine. The amounts of glycine, L -threonine and L -cystine supplementations were 2%, 0.078%, and 0.2%, respectively, and the amino acid contents of all diet were adjusted with supplementation of L -glutamic acid. The body weight gain, food efficiency ratio, and the amino acid nutrition biomarker, which is the urinary excretion ratio of ( N 1-methyl-2-pyridone-5-carboxamide+ N 1-methyl-4-pyridone-3-carboxamide)/ N 1-methylnicotinamide, improved by adding the amino acids glycine, L -threonine and L -cystine to a 9% casein diet. The conversion percentage of L -tryptophan to nicotinamide decreased with the addition of the amino acids glycine, L -threonine and L -cystine to a 9% casein diet, while the concentrations of serotonin in the brain, stomach and small intestine were not affected at all. The effects of each amino acid on body weight gain and the conversion ratios were also investigated. Glycine did not affect these variables. L -Cystine improved the body weight gain, the food efficiency ratio and the urine ratio, and decreased the conversion percentage. L -Threonine did not affect body weight gain or food efficiency ratio; however, it improved the urine ratio and decreased the conversion percentage.
机译:烟酰胺和5-羟色胺是从哺乳动物的L-色氨酸合成的。重要的是要知道影响烟酰胺和5-羟色胺合成的营养因素。我们调查了氨基酸组成的影响。幼龄成年大鼠自由喂食21天低蛋白(9%酪蛋白)饮食([1]对照),或补充以下氨基酸的低蛋白饮食之一:[2]甘氨酸,L-苏氨酸和L -胱氨酸,[3] L-苏氨酸和L-胱氨酸,[4]甘氨酸和L-胱氨酸以及[5]甘氨酸和L-苏氨酸。补充甘氨酸,L-苏氨酸和L-胱氨酸的量分别为2%,0.078%和0.2%,并且通过添加L-谷氨酸来调节所有饮食的氨基酸含量。体重增加,食物利用率和氨基酸营养生物标志物,即(N 1 -甲基-2-吡啶酮-5-甲酰胺+ N 1 -methyl-4-pyridone-3-carboxamide)/ N 1 -methylnicotinamide,可通过在9%的酪蛋白饮食中添加氨基酸甘氨酸,L-苏氨酸和L-胱氨酸来改善。在9%的酪蛋白饮食中添加氨基酸甘氨酸,L-苏氨酸和L-胱氨酸后,L-色氨酸向烟酰胺的转化率降低,而脑,胃和小肠中5-羟色胺的浓度不受影响。所有。还研究了每种氨基酸对体重增加和转化率的影响。甘氨酸不影响这些变量。 L-胱氨酸改善了体重增加,食物利用率和尿液比率,并降低了转化率。 L-苏氨酸不影响体重增加或食物利用率。但是,它改善了尿比,降低了转化率。

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