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首页> 外文期刊>PLoS One >Relationships between electrolyte and amino acid compositions in sweat during exercise suggest a role for amino acids and K + in reabsorption of Na + and Cl - from sweat
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Relationships between electrolyte and amino acid compositions in sweat during exercise suggest a role for amino acids and K + in reabsorption of Na + and Cl - from sweat

机译:运动过程中汗液中的电解质和氨基酸组合物的关系表明了氨基酸和K +在Na +和Cl的k +中的作用

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Concentrations of free amino acids and [K + ] in human sweat can be many times higher than in plasma. Conversely, [Na + ] and [Cl - ] in sweat are hypotonic to plasma. It was hypothesised that the amino acids and K + were directly or indirectly associated with the resorption of Na + and Cl - in the sweat duct. The implication would be that, as resources of these components became limiting during prolonged exercise then the capacity to resorb [Na + ] and [Cl - ] would diminish, resulting in progressively higher levels in sweat. If this were the case, then [Na + ] and [Cl - ] in sweat would have inverse relationships with [K + ] and the amino acids during exercise. Forearm sweat was collected from 11 recreational athletes at regular intervals during a prolonged period of cycling exercise after 15, 25, 35, 45, 55 and 65 minutes. The subjects also provided passive sweat samples via 15 minutes of thermal stimulation. The sweat samples were analysed for concentrations of amino acids, Na + , Cl - , K + , Mg 2+ and Ca 2+ . The exercise sweat had a total amino acid concentration of 6.4 ± 1.2mM after 15 minutes which was lower than the passive sweat concentration at 11.6 ± 0.8mM ( p 0.05) and showed an altered array of electrolytes, indicating that exercise stimulated a change in sweat composition. During the exercise period, [Na + ] in sweat increased from 23.3 ± 3.0mM to 34.6 ± 2.4mM ( p 0.01) over 65 minutes whilst the total concentrations of amino acids in sweat decreased from 6.4 ± 1.2mM to 3.6 ± 0.5mM. [Na + ] showed significant negative correlations with the concentrations of total amino acids ( r = -0.97, p 0.05), K + ( r = -0.93, p 0.05) and Ca 2+ ( r = -0.83, p 0.05) in sweat. The results supported the hypothesis that amino acids and K + , as well as Ca 2+ , were associated with resorption of Na + and Cl - .
机译:人汗液中游离氨基酸和[k +]的浓度可能比血浆高多倍。相反,汗液中的[Na +]和[Cl - ]是低渗到血浆。假设氨基酸和k +直接或间接与汗水管中的Na +和Cl-的吸收有关。这一含义是,随着这些组分的资源在长时间运动期间变得限制,然后将[Na +]和[Cl-]的能力递减,导致汗液中逐渐更高的水平。如果是这种情况,则汗液中的[Na +]和[Cl-]将与运动期间与α和氨基酸具有反向关系。在15,25,35,45,55和65分钟后,在长期的循环运动期间,每次休闲间隔收集前臂汗水。受试者还通过15分钟的热刺激提供被动汗液样品。分析汗液样品以浓度浓度氨基酸,Na +,Cl - ,K +,Mg 2+和Ca 2+。在15分钟后,运动汗液的总氨基酸浓度为6.4±1.2mm,其低于11.6±0.8mm(P <0.05)的被动汗液浓度,并显示出改变的电解质阵列,表明运动刺激了变化在汗液组合物中。在运动期间,汗液中的[Na +]从65分钟增加到35.3±3.0mm至34.6±2.4mm(P <0.01),而汗液中氨基酸的总浓度从6.4±1.2mm降低至3.6±0.5毫米。 [Na +]显示出与总氨基酸的浓度显着的负相关(R = -0.97,P <0.05),K +(R = -0.93,P <0.05)和Ca 2+(R = -0.83, P <0.05)汗液。结果支持假设氨基酸和k +以及Ca 2+与Na +和Cl的重吸有关。

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