Cathodal current-induced vasodilation to single application and the amplified response to repeated application in humans rely on aspirin-sensitive mechanisms
- 1 October 2005
- journal article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 99 (4) , 1538-1544
- https://doi.org/10.1152/japplphysiol.00258.2005
Abstract
Assumed to rely on an axon reflex, the current-induced vasodilation (CIV) interferes with the microvascular response to iontophoretic drug delivery. Mechanisms resulting in CIV are likely different at the anode and at the cathode. While studies have been conducted to understand anodal CIV, little information is available on cathodal CIV. The present study investigates CIV observed following 0.1-mA cathodal applications on forearms of healthy volunteers and the possible mechanisms involved. Results are expressed in percentage of the cutaneous heat-induced maximal vascular conductance [%MVC (means ± SE)]. 1) The amplitude of CIV was proportional to the duration of cathodal currents for periods of r = 0.99. 2) Two current applications of 10 s, with 10-min interstimulation interval, induced a higher peak value of CIV (79.1 ± 8.6% MVC) than the one obtained with all-at-once 20-s current application (39.5 ± 4.3% MVC, P < 0.05). This amplified vascular response due to segmental application was observed for all tested interstimulation intervals (up to 40 min). 3) Two hours and 3 days following pretreatment with 1-g oral aspirin, the CIV observed following cathodal application, as well as the difference of cathodal CIV amplitude between all-at-once and segmented applications, were reduced. These findings suggest a role of prostaglandins, not only released from endothelial or smooth muscle cells, as direct vasodilator and/or as a sensitizer. Thus aspirin pretreatment could be used to decrease CIV resulting from all-at-once and repeated cathodal application and facilitate the study of the specific vascular effect induced by the drug delivered.Keywords
This publication has 42 references indexed in Scilit:
- Anodal Current Intensities above 40 μA Interfere with Current-Induced Axon-Reflex Vasodilatation in Human SkinJournal of Vascular Research, 2004
- Impaired Microvascular Function in Normal Children: Effects of Adiposity and Poor Glucose HandlingThe Journal of Physiology, 2003
- Current-Induced Vasodilation during Water Iontophoresis (5 min, 0.10 mA) Is Delayed from Current Onset and Involves Aspirin Sensitive MechanismsJournal of Vascular Research, 2002
- Nonspecific Microvascular Vasodilation during Iontophoresis Is Attenuated by Application of Hyperosmolar SalineMicrovascular Research, 1999
- Cutaneous Vasodilation Induced by Local Warming, Sodium Nitroprusside, and Bretylium Iontophoresis on the HandMicrovascular Research, 1998
- The Effect of Iontophoresis on the Cutaneous Vasculature: Evidence for Current-Induced HyperemiaMicrovascular Research, 1995
- Cyclooxygenase inhibitors acetylsalicylic acid and indomethacin do not affect capsaicin-induced neurogenic inflammation in human skinInflammation Research, 1993
- Production of Hyperalgesic Prostaglandins by Sympathetic Postganglionic NeuronsJournal of Neurochemistry, 1989
- Aspirin causes short-lived inhibition of bradykinin-stimulated prostacyclin production in manNature, 1985
- Axonal Transport: The Intracellular Traffic of the NeuronPublished by American Geophysical Union (AGU) ,1977