Influence of single oral administration of taurine-dextrin associate on concentration of amino acids in rat plasma

R. Ostapiv, O. I. Lukashchuk, V. Samaryk, M. Nagornyak, S. Varvarenko, Donetska str. Lviv Ukraine Feed Additives
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Abstract

The aim of the study was to test the ability of dextrin particles of different sizes, modified with N-stearylglutamic acid, to increase the transport of taurine into the blood plasma of rats. To achieve this goal, Wistar rats weighing 240–260 g were divided into control and four experimental groups. The control group was administered once perorally with water. The first experimental group was administered perorally with an aqueous solution of taurine at a dose of 100 mg/kg, the second and third ― a solution of taurine-dextrin associate with particle sizes of 60–90 nm and 500–800 nm, in which the dose of taurine was 100 mg/kg. The fourth experimental group (IV) was administered only dextrin. In 30 min, the rats were decapitated, and blood was collected. Blood cells and proteins were precipitated, and samples were derivatized with 1-fluoro-2,4-dinitrobenzene. Free amino acids of plasma were separated on a Dionex Ultimate 3000 liquid chromatograph equipped with a spectrophotometric detector, chromatographic column Luna C18 (2) 250×4.6 mm, elution type was gradient. It was registered that in the first and third experimental groups the content of taurine in the blood plasma of rats was 33.8% higher than in the control. Oral administration of taurine-dextrin associate with 60–90 nm particles increases the taurine content by 62.6% compared to the control and by 21.6% more than in the first and third experimental groups. This indicates efficient transport of taurine by dextrin only with particles of 60–90 nm. Administration of both taurine and taurine-dextrin associate reduced concentrations of glutamine, methionine, lysine, alanine, phenylalanine, and histidine. Moreover, the reason for the decrease in the content of the last two amino acids was not only taurine, but also the transporter itself. With the administration of the transporter the concentration of asparagine was lower than in control, and the content of arginine, on the contrary, higher. In the first experimental group, the concentration of aspartic acid and serine decreased, and in the second ― valine, leucine and tryptophan, in the third ― glutamic acid. The glycine content increased in the second experimental group. Ornithine content in all experimental groups except the third was higher, compared with the control. Thus, modified dextrin with a particle size of 60–90 nm increases the transport of taurine into the blood.
单次口服牛磺酸-糊精复合物对大鼠血浆氨基酸浓度的影响
这项研究的目的是测试用n -硬脂酰谷氨酸修饰的不同大小的糊精颗粒增加牛磺酸进入大鼠血浆的运输能力。为此,将体重240 ~ 260 g的Wistar大鼠分为对照组和4个实验组。对照组灌水1次。第一个实验组口服剂量为100 mg/kg的牛磺酸水溶液,第二个和第三个实验组口服剂量为60-90 nm和500-800 nm粒径的牛磺酸糊精溶液,其中牛磺酸剂量为100 mg/kg。第四实验组(IV)只给予糊精。30分钟后,取大鼠头颅,采血。血细胞和蛋白质沉淀,样品用1-氟-2,4-二硝基苯衍生。血浆游离氨基酸在配备分光光度检测器的Dionex Ultimate 3000液相色谱仪上分离,色谱柱Luna C18 (2) 250×4.6 mm,洗脱方式为梯度洗脱。实验1、3组大鼠血浆中牛磺酸含量比对照组高33.8%。与对照组相比,口服60-90 nm颗粒牛磺酸糊精复合物的牛磺酸含量增加了62.6%,比第一和第三实验组增加了21.6%。这表明只有60 - 90nm的颗粒糊精才能有效地运输牛磺酸。牛磺酸和牛磺酸糊精均可降低谷氨酰胺、蛋氨酸、赖氨酸、丙氨酸、苯丙氨酸和组氨酸的浓度。此外,导致后两种氨基酸含量下降的原因不仅是牛磺酸,还与转运蛋白本身有关。给药后天冬酰胺浓度低于对照组,精氨酸含量高于对照组。第一实验组天冬氨酸和丝氨酸浓度下降,第二实验组缬氨酸、亮氨酸和色氨酸浓度下降,第三实验组谷氨酸浓度下降。第二试验组甘氨酸含量升高。除第3组外,其余试验组鸟氨酸含量均高于对照组。因此,粒径为60-90纳米的改性糊精增加了牛磺酸进入血液的运输。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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