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Microvasc Res. 2015 Jan;97:81-7. doi: 10.1016/j.mvr.2014.01.001. Epub 2014 Jan 10.
2
Acute localized administration of tetrahydrobiopterin and chronic systemic atorvastatin treatment restore cutaneous microvascular function in hypercholesterolaemic humans.急性局部给予四氢生物蝶呤和慢性全身阿托伐他汀治疗可恢复高胆固醇血症患者的皮肤微血管功能。
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Peripheral mechanisms of thermoregulatory control of skin blood flow in aged humans.老年人皮肤血流体温调节控制的周边机制。
J Appl Physiol (1985). 2010 Nov;109(5):1538-44. doi: 10.1152/japplphysiol.00338.2010. Epub 2010 Apr 22.
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Roles of nitric oxide synthase isoforms in cutaneous vasodilation induced by local warming of the skin and whole body heat stress in humans.一氧化氮合酶同工酶在皮肤局部升温及全身热应激诱导的皮肤血管扩张中的作用。
J Appl Physiol (1985). 2009 Nov;107(5):1438-44. doi: 10.1152/japplphysiol.00690.2009. Epub 2009 Sep 10.
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The effect of microdialysis needle trauma on cutaneous vascular responses in humans.微透析针创伤对人体皮肤血管反应的影响。
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The involvement of heating rate and vasoconstrictor nerves in the cutaneous vasodilator response to skin warming.加热速率和血管收缩神经在皮肤对皮肤升温的血管舒张反应中的作用。
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The involvement of norepinephrine, neuropeptide Y, and nitric oxide in the cutaneous vasodilator response to local heating in humans.去甲肾上腺素、神经肽Y和一氧化氮在人体皮肤对局部加热的血管舒张反应中的作用。
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Endothelial nitric oxide synthase control mechanisms in the cutaneous vasculature of humans in vivo.人体内皮肤血管中内皮型一氧化氮合酶的调控机制
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9
The role of baseline in the cutaneous vasoconstrictor responses during combined local and whole body cooling in humans.基线在人体局部和全身联合降温过程中皮肤血管收缩反应中的作用。
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Cold-induced cutaneous vasoconstriction is mediated by Rho kinase in vivo in human skin.寒冷诱导的皮肤血管收缩在人体皮肤中由Rho激酶在体内介导。
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皮肤温度对皮肤血管舒张剂对β-肾上腺素能激动剂异丙肾上腺素反应的影响。

Effect of skin temperature on cutaneous vasodilator response to the β-adrenergic agonist isoproterenol.

作者信息

Hodges Gary J, Kellogg Dean L, Johnson John M

机构信息

Department of Kinesiology, Brock University, St. Catharines, Ontario, Canada; Department of Physiology, The University of Texas Health Science Center at San Antonio, San Antonio, Texas; and.

Department of Physiology, The University of Texas Health Science Center at San Antonio, San Antonio, Texas; and Department of Medicine, The University of Texas Health Science Center at San Antonio, San Antonio, Texas

出版信息

J Appl Physiol (1985). 2015 Apr 1;118(7):898-903. doi: 10.1152/japplphysiol.01071.2014. Epub 2015 Feb 19.

DOI:10.1152/japplphysiol.01071.2014
PMID:25701007
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4385879/
Abstract

The vascular response to local skin cooling is dependent in part on a cold-induced translocation of α2C-receptors and an increased α-adrenoreceptor function. To discover whether β-adrenergic function might contribute, we examined whether β-receptor sensitivity to the β-agonist isoproterenol was affected by local skin temperature. In seven healthy volunteers, skin blood flow was measured from the forearm by laser-Doppler flowmetry and blood pressure was measured by finger photoplethysmography. Data were expressed as cutaneous vascular conductance (CVC; laser-Doppler flux/mean arterial blood pressure). Pharmacological agents were administered via intradermal microdialysis. We prepared four skin sites: one site was maintained at a thermoneutral temperature of 34°C (32 ± 10%CVCmax) one site was heated to 39°C (38 ± 11%CVCmax); and two sites were cooled, one to 29°C (22 ± 7%CVCmax) and the other 24°C (16 ± 4%CVCmax). After 20 min at these temperatures to allow stabilization of skin blood flow, isoproterenol was perfused in concentrations of 10, 30, 100, and 300 μM. Each concentration was perfused for 15 min. Relative to the CVC responses to isoproterenol at the thermoneutral skin temperature (34°C) (+21 ± 10%max), low skin temperatures reduced (at 29°C) (+17 ± 6%max) or abolished (at 24°C) (+1 ± 5%max) the vasodilator response, and warm (39°C) skin temperatures enhanced the vasodilator response (+40 ± 9%max) to isoproterenol. These data indicate that β-adrenergic function was influenced by local skin temperature. This finding raises the possibility that a part of the vasoconstrictor response to direct skin cooling could include reduced background β-receptor mediated vasodilation.

摘要

血管对局部皮肤冷却的反应部分取决于冷诱导的α2C受体易位和α-肾上腺素能受体功能增强。为了探究β-肾上腺素能功能是否起作用,我们研究了β受体对β激动剂异丙肾上腺素的敏感性是否受局部皮肤温度影响。在7名健康志愿者中,通过激光多普勒血流仪测量前臂皮肤血流量,通过手指光电容积描记法测量血压。数据以皮肤血管传导率(CVC;激光多普勒通量/平均动脉血压)表示。通过皮内微透析给予药物。我们准备了4个皮肤部位:一个部位维持在34°C的热中性温度(CVCmax为32±10%),一个部位加热到39°C(CVCmax为38±11%);两个部位冷却,一个冷却到29°C(CVCmax为22±7%),另一个冷却到24°C(CVCmax为16±4%)。在这些温度下保持20分钟以使皮肤血流量稳定后,以10、30、100和300μM的浓度灌注异丙肾上腺素。每个浓度灌注15分钟。相对于热中性皮肤温度(34°C)时对异丙肾上腺素的CVC反应(最大增加21±10%),低皮肤温度降低了(29°C时)(最大增加17±6%)或消除了(24°C时)(最大增加1±5%)血管舒张反应,而温暖(39°C)的皮肤温度增强了对异丙肾上腺素的血管舒张反应(最大增加40±9%)。这些数据表明β-肾上腺素能功能受局部皮肤温度影响。这一发现增加了一种可能性,即对直接皮肤冷却的血管收缩反应的一部分可能包括背景β受体介导的血管舒张减少。