Several mediators contribute to postocclusive reactive hyperemia (PORH) of the skin, including sensory nerves and endothelium-derived hyperpolarizing factors. The main objective of our study was to investigate the specific contribution of epoxyeicosatrienoic acids in human skin PORH. Eight healthy volunteers were enrolled in two placebo-controlled experiments. In the first experiment we studied the separate and combined effects of 6.5 mM fluconazole, infused through microdialysis fibers, and lidocaine/prilocaine cream on skin PORH following 5 min arterial occlusion. In the second experiment we studied the separate and combined effects of 6.5 mM fluconazole and 10 mM N(G)-monomethyl-l-arginine (l-NMMA). Skin blood flux was recorded using two-dimensional laser speckle contrast imaging. Maximal cutaneous vascular conductance (CVC(max)) was obtained following 29 mM sodium nitroprusside perfusion. The PORH peak at the placebo site averaged 66 ± 11%CVC(max). Compared with the placebo site, the peak was significantly lower at the fluconazole (47 ± 10%CVC(max); P < 0.001), lidocaine (29 ± 10%CVC(max); P < 0.001), and fluconazole + lidocaine (30 ± 10%CVC(max); P < 0.001) sites. The effect of fluconazole on the area under the curve was more pronounced. In the second experiment, the PORH peak was significantly lower at the fluconazole site, but not at the l-NMMA or combination site, compared with the placebo site. In addition to sensory nerves cytochrome epoxygenase metabolites, putatively epoxyeicosatrienoic acids, play a major role in healthy skin PORH, their role being more important in the time course rather than the peak.
Ischemic digital ulcer (DU) is a serious complication of systemic sclerosis (SSc). Intravenous prostanoids are the only approved treatment for active DUs, but they induce dose-limiting side effects and require hospitalization. Our objective was to evaluate the effect of iontophoresis (a noninvasive drug delivery method) of treprostinil in SSc patients. Three studies were conducted: a pharmacokinetic study in 12 healthy volunteers showed that peak dermal concentration was reached at 2 hours, whereas plasma treprostinil was undetected. Then, a placebo-controlled, double-blind incremental dose study assessed the effect of treprostinil on digital skin blood flow in 22 healthy subjects. The effect of the highest dose was then compared with that of placebo in 12 SSc patients. Treprostinil significantly increased skin blood flow in healthy subjects (P = 0.006) and in SSc patients (P = 0.023). In conclusion, digital iontophoresis of treprostinil is feasible, is well tolerated, and increases digital skin perfusion. It could be tested as a treatment for SSc-related DUs.
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