Journal of Applied Physiology AJP: Endocrinology and Metabolism
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J Appl Physiol (July 9, 2004). doi:10.1152/japplphysiol.00814.2003
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Submitted on July 31, 2003
Accepted on May 25, 2004

Local heating of human skin causes hyperemia without mediation by muscarinic cholinergic receptors or prostanoids

Sandrine Golay1, Christian Haeberli2, Anne Delachaux1, Lucas Liaudet3, Paul Kucera2, Bernard Waeber1, and Francois Feihl1*

1 Division of Clinical Pathophysiology, Lausanne University Hospital, Lausanne, VD, Switzerland
2 Institute of Physiology, Lausanne University, Lausanne, VD, Switzerland
3 Medical Intensive Care, Lausanne University Hospital, Lausanne, VD, Switzerland

* To whom correspondence should be addressed. E-mail: Francois.Feihl{at}chuv.hospvd.ch.

Local changes in surface temperature have a powerful influence on the perfusion of human skin. Heating increases local skin blood flow (SkBF), but the mechanisms and mediators of this response (thermal hyperemia response) are incompletely elucidated. In the present study, we examined the possible dependence of the thermal hyperemia response on stimulation of muscarinic cholinergic receptors and on production of vasodilator prostanoids. In 13 male healthy subjects aged 20 - 30 years, a temperature-controlled chamber was positioned on the volar face of one forearm and used to raise surface temperature from 34 to 41°C. The time-course of the resulting thermal hyperemia response was recorded with a laser-Doppler imager. In one experiment, each of 8 subjects received an i.v. bolus of the antimuscarinic agent glycopyrrolate (4 µg/kg) on one visit and saline on the other. The thermal hyperemia response was determined within the hour following the injections. Glycopyrrolate effectively inhibited the skin vasodilation induced by iontophoresis of acetylcholine, but did not influence the thermal hyperemia response. In a second experiment conducted in 5 other subjects, 1 gram of the cyclooxygenase inhibitor aspirin administered orally totally abolished the vasodilation induced in the skin by anodal current, but also failed to modify the thermal hyperemia response. The present study excludes the stimulation of muscarinic receptors and the production of vasodilator prostaglandins as essential and nonredundant mechanisms for the vasodilation induced by local heating in human forearm skin.




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