首页> 美国卫生研究院文献>Journal of Applied Physiology >Antagonism of soluble guanylyl cyclase attenuates cutaneous vasodilation during whole body heat stress and local warming in humans
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Antagonism of soluble guanylyl cyclase attenuates cutaneous vasodilation during whole body heat stress and local warming in humans

机译:可溶性鸟苷酰环化酶的拮抗作用减弱了人体在全身热应激和局部变暖过程中的皮肤血管舒张作用

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摘要

We hypothesized that nitric oxide activation of soluble guanylyl cyclase (sGC) participates in cutaneous vasodilation during whole body heat stress and local skin warming. We examined the effects of the sGC inhibitor, 1H-[1,2,4]oxadiazolo[4,3-a]quinoxalin-1-one (ODQ), on reflex skin blood flow responses to whole body heat stress and on nonreflex responses to increased local skin temperature. Blood flow was monitored by laser-Doppler flowmetry, and blood pressure by Finapres to calculate cutaneous vascular conductance (CVC). Intradermal microdialysis was used to treat one site with 1 mM ODQ in 2% DMSO and Ringer, a second site with 2% DMSO in Ringer, and a third site received Ringer. In protocol 1, after a period of normothermia, whole body heat stress was induced. In protocol 2, local heating units warmed local skin temperature from 34 to 41°C to cause local vasodilation. In protocol 1, in normothermia, CVC did not differ among sites [ODQ, 15 ± 3% maximum CVC (CVCmax); DMSO, 14 ± 3% CVCmax; Ringer, 17 ± 6% CVCmax; P > 0.05]. During heat stress, ODQ attenuated CVC increases (ODQ, 54 ± 4% CVCmax; DMSO, 64 ± 4% CVCmax; Ringer, 63 ± 4% CVCmax; P < 0.05, ODQ vs. DMSO or Ringer). In protocol 2, at 34°C local temperature, CVC did not differ among sites (ODQ, 17 ± 2% CVCmax; DMSO, 18 ± 4% CVCmax; Ringer, 18 ± 3% CVCmax; P > 0.05). ODQ attenuated CVC increases at 41°C local temperature (ODQ, 54 ± 5% CVCmax; DMSO, 86 ± 4% CVCmax; Ringer, 90 ± 2% CVCmax; P < 0.05 ODQ vs. DMSO or Ringer). sGC participates in neurogenic active vasodilation during heat stress and in the local response to direct skin warming.
机译:我们假设一氧化氮激活可溶性鸟苷酰环化酶(sGC)参与全身热应激和局部皮肤变暖期间的皮肤血管舒张。我们检查了sGC抑制剂1H- [1,2,4]恶二唑[4,3-a]喹喔啉-1-酮(ODQ)对全身热应激的反射性皮肤血流反应和非反射性反应的影响升高局部皮肤温度。通过激光多普勒血流仪监测血流,通过Finapres监测血压以计算皮肤血管电导(CVC)。皮内微透析用于治疗一个部位,该部位在2%DMS​​O和林格中含1 mM ODQ,第二个部位在林格中含2%DMS​​O,第三个部位接受林格。在方案1中,经过一段常温后,诱发了全身热应激。在方案2中,局部加热单元将局部皮肤温度从34°C加热到41°C,以引起局部血管舒张。在协议1中,在正常体温下,CVC在各部位之间没有差异[ODQ,最大CVC为15±3%(CVCmax); DMSO,14±3%CVCmax;振铃器,CVCmax为17±6%; P> 0.05]。在热应激期间,ODQ衰减的CVC增加(ODQ,54±4%CVCmax; DMSO,64±4%CVCmax; Ringer,63±4%CVCmax; P <0.05,ODQ vs.DMSO或Ringer)。在协议2中,在34°C的局部温度下,站点之间的CVC并无差异(ODQ,17±2%CVCmax; DMSO,18±4%CVCmax; Ringer,18±3%CVCmax; P> 0.05)。 ODQ衰减的CVC在41°C的局部温度下增加(ODQ,54±5%CVCmax; DMSO,86±4%CVCmax; Ringer,90±2%CVCmax; P <0.05 ODQ vs.DMSO或Ringer)。 sGC在热应激过程中参与神经源性主动血管舒张作用,并参与对直接皮肤变暖的局部反应。

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