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The mechanisms underlying the muscle metaboreflex modulation of sweating and cutaneous blood flow in passively heated humans

机译:被动加热的人出汗和皮肤血液流动的肌肉代谢反射调节的机制

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Metaboreceptors can modulate cutaneous blood flow and sweating during heat stress but the mechanisms remain unknown. Fourteen participants (31???????±????13????years) performed 1?¢????min bout of isometric handgrip (IHG) exercise at 60% of their maximal voluntary contraction followed by a 3?¢????min occlusion (OCC), each separated by 10 min, initially under low (LHS, to activate sweating without changes in core temperature) and high (HHS, whole?¢????body heating to a core temperature increase of 1.0???°C) heat stress conditions. Cutaneous vascular conductance (CVC) and sweat rate were measured continuously at four forearm skin sites perfused with 1) lactated Ringer's solution (Control), 2) 10????mmol L?¢????NAME [inhibits nitric oxide synthase (NOS)], 3) 10????mmol Ketorolac [inhibits cyclooxygenase (COX)], or 4) 4????mmol theophylline (THEO; inhibits adenosine receptors). Relative to pre?¢????IHG levels with Control, NOS inhibition attenuated the metaboreceptor?¢????mediated increase in sweating under LHS and HHS ( P ?????¢???¤????0.05), albeit the attenuation was greater under LHS ( P ?????¢???¤????0.05). In addition, a reduction from baseline was observed with THEO under LHS during OCC ( P???? ?¢???¤????0.05), but not HHS (both P ????>????0.05). In contrast, CVC was lower than Control with L?¢????NAME during OCC in HHS ( P???? ?¢???¤????0.05), but not LHS ( P ????>????0.05). We show that metaboreceptor activation modulates CVC via the stimulation of NOS and adenosine receptors, whereas NOS, but not COX or adenosine receptors, contributes to sweating at all levels of heating.
机译:代谢受体可以调节热应激期间皮肤的血液流动和出汗,但其机制仍不清楚。十四名参与者(31岁±13岁)以其最大自愿收缩的60%进行了1分钟的等距握力(IHG)运动,然后进行了一次一个3分钟的闭塞(OCC),每个间隔10分钟,最初在低(LHS,以激活出汗而不改变核心温度)和高(HHS,整个身体加热到核心温度升高1.0℃。连续测量四个前臂皮肤部位的皮肤血管电导(CVC)和出汗率,这些部位灌注1)乳酸林格氏液(对照),2)10 ?? mmol L ???????名称[抑制一氧化氮合酶( NOS)],3)10 -mmol酮咯酸[抑制环氧合酶(COX)]或4)4 -mmol茶碱(THEO;抑制腺苷受体)。相对于对照组的IHG之前的水平,NOS抑制作用减弱了在LHS和HHS下由代谢受体介导的出汗增加(P <0.05)。 ),尽管在LHS下衰减更大(P = 0.05)。另外,在OCC期间,在LHS下观察到THEO与基线相比有降低的趋势(P =≥0.05),而HHS则没有(均为P> 0.05)。 )。相反,在HHS的OCC期间,CVC低于具有L?¢ ??????名称的对照(P ??????? ¢ ????????? 0.05),但不是LHS(P ????> 0.05)。我们显示,通过刺激NOS和腺苷受体,代谢受体激活调节CVC,而NOS而不是COX或腺苷受体,在所有加热水平下都出汗。

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