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首页> 外文期刊>Fish Physiology and Biochemistry >Intestinal absorption of amino acids in the Pacific bluefin tuna (Thunnus orientalis): in vitro lysine–arginine interaction using the everted intestine system
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Intestinal absorption of amino acids in the Pacific bluefin tuna (Thunnus orientalis): in vitro lysine–arginine interaction using the everted intestine system

机译:太平洋蓝鳍金枪鱼(东方金枪鱼)中氨基酸的肠吸收:使用外翻肠系统进行的体外赖氨酸与精氨酸相互作用

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摘要

The interaction between lysine (Lys) and arginine (Arg) in the proximal intestinal region of Pacific bluefin tuna (Thunnus orientalis) was evaluated using the everted intestine method. This in vitro intestinal system has been shown to be an effective tool for studying the nutrient absorption without the need to handle the tuna fish in marine cages as needed for digestibility and amino acid (AA) absorption. We used a factorial design with two sets of variables: low and high Lys concentration (10 and 75 mM) and four different Arg concentrations (3, 10, 20, and 30 mM). Both amino acids were dissolved in marine Ringer solution with a basal amino acidic composition consisting of a tryptone solution (9 mg mL−1). No interaction was observed between the absorption of Lys and Arg during the first 10 min of the experiment when low concentration of Lys and Arg was used in the hydrolyzate solution. However, there seemed to be a positive effect on Lys absorption when both amino acids were at high concentrations (30 and 75 mM, respectively). This type of studies will led us to test different formulations and/or additives to better understand the efficiency of AA supplementation as an alternative to in situ studies that are difficult to follow to design with the Pacific Bluefin Tuna.
机译:使用外翻肠法评估了太平洋蓝鳍金枪鱼(Thunnus Orientalis)近端肠区域赖氨酸(Lys)和精氨酸(Arg)之间的相互作用。该体外肠道系统已被证明是研究养分吸收的有效工具,而无需根据消化率和氨基酸(AA)吸收的需要在海水笼中处理金枪鱼。我们使用了具有两组变量的阶乘设计:低和高Lys浓度(10和75mM)和四种不同的Arg浓度(3、10、20和30mM)。两种氨基酸都溶解在海洋林格氏溶液中,其基础氨基酸组成是胰蛋白tone溶液(9 mg mL-1)。当在水解液中使用低浓度的Lys和Arg时,在实验的前10分钟内未观察到Lys和Arg的吸收之间存在相互作用。但是,当两个氨基酸都处于高浓度(分别为30和75 mM)时,似乎对Lys吸收有积极作用。这种类型的研究将引导我们测试不同的配方和/或添加剂,以更好地理解AA补充剂的效率,以替代原本难以进行太平洋蓝鳍金枪鱼设计的原位研究。

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