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首页> 外文期刊>The Journal of Physiology >The interactive contributions of Na+/K+-ATPase and nitric oxide synthase to sweating and cutaneous vasodilatation during exercise in the heat
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The interactive contributions of Na+/K+-ATPase and nitric oxide synthase to sweating and cutaneous vasodilatation during exercise in the heat

机译:热运动中Na + / K + -ATPase和一氧化氮合酶对出汗和皮肤血管舒张的交互作用

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Nitric oxide (NO) synthase (NOS) contributes to the heat loss responses of sweating and cutaneous vasodilatation. Given that NO can activate Na+/K+-ATPase, which also contributes to sweating and microvasculature regulation, we evaluated the separate and combined influence of Na+/K+-ATPase and NOS on sweating and cutaneous vasodilatation. Thirteen young (233years) males performed two 30min semi-recumbent cycling bouts in the heat (35 degrees C) at a fixed rate of metabolic heat production (500W) followed by 20 and 40min recoveries, respectively. Local sweat rate (LSR) and cutaneous vascular conductance (CVC) were measured at four forearm skin sites continuously perfused via intradermal microdialysis with either: (1) lactated Ringer solution (Control); (2) 6m? ouabain (Ouabain), a Na+/K+-ATPase inhibitor; (3) 10m? l-N-G-nitroarginine methyl ester (l-NAME), a NOS inhibitor; or (4) 6m? ouabain and 10m? l-NAME (Ouabain+l-NAME). At the end of both exercise bouts relative to Control, LSR was attenuated with Ouabain (54-60%), l-NAME (12-13%) and Ouabain+l-NAME (68-74%; all P < 0.05). Moreover, the sum of attenuations from Control induced by independent administration of Ouabain and l-NAME was similar to the combined infusion of Ouabain+l-NAME (both P 0.74). Compared to Control, CVC at the end of both exercise bouts was similar with Ouabain (both P 0.30), but attenuated with l-NAME (%CVCmax reduction from Control, 24-25%). Furthermore, CVC at the Ouabain+l-NAME site (38-39%; all P < 0.01) was attenuated compared to Control and did not differ from baseline resting values (both P 0.81). We show that Na+/K+-ATPase and NOS do not synergistically mediate sweating, whereas they influence cutaneous blood flow in an interactive manner during exercise in the heat.
机译:一氧化氮(NO)合酶(NOS)有助于出汗和皮肤血管舒张的热损失反应。鉴于NO可以激活Na + / K + -ATPase,这也有助于出汗和微脉管系统的调节,我们评估了Na + / K + -ATPase和NOS对出汗和皮肤血管舒张的单独和综合影响。 13位年轻(233岁)男性以固定的代谢热产生速率(500W)在高温(35摄氏度)下进行了两次30分钟的半卧式自行车运动,然后分别恢复了20分钟和40分钟。通过皮内微透析连续灌注以下方法之一,测量前臂的四个皮肤部位的局部出汗率(LSR)和皮肤血管电导率(CVC):(1)乳酸林格液(对照); (2)6m?哇巴因(Ouabain),一种Na + / K + -ATPase抑制剂; (3)10m? 1-N-G-硝基精氨酸甲酯(1-NAME),一种NOS抑制剂;或(4)6m?哇巴因和10m? l-NAME(瓦本+ l-NAME)。在两次相对于对照的运动结束时,用瓦巴因(54-60%),l-NAME(12-13%)和瓦巴因+ 1-NAME(68-74%;所有P <0.05)减轻LSR。此外,通过分别施用瓦巴因和l-NAME诱导的对照的衰减总和类似于瓦巴因+ l-NAME的联合输注(均为P 0.74)。与对照组相比,两次运动结束时的CVC与Ouabain相似(均为P 0.30),但被l-NAME减弱(对照组的CVCmax降低百分比为24-25%)。此外,与对照相比,Ouabain + 1-NAME位点的CVC(38-39%;所有P <0.01)减弱,并且与基线静息值无差异(均为P 0.81)。我们显示,Na + / K + -ATPase和NOS不能协同介导出汗,而它们在高温运动过程中以交互方式影响皮肤血液流动。

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