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Macrolide-induced hyperthermia in foals: Role of impaired sweat responses
A L Stieler1, L C Sanchez1, M F Mallicote1
1Department of Large Animal Clinical Sciences, College of Veterinary Medicine, University of Florida, Gainesville, USA.
Reasons For Performing Study:
The mechanism of hyperthermia, a potentially fatal adverse effect of erythromycin treatment of foals, is unknown.
Objectives:
To determine the cause of erythromycin-associated hyperthermia. It was hypothesised that the normal sweat response of foals is impaired by treatment with erythromycin.
Study Design:
Blinded, crossover study in 10 healthy pony foals.
Methods:
Foals kept in stalls were given either erythromycin (25 mg/kg bwt orally, 3 times daily) or control for 10 days then turned out for a further 10 days. Quantitative intradermal terbutaline sweat tests were performed on Days 1 (baseline), 3, 10 and 20. The effects on terbutaline-induced sweating of erythromycin, terbutaline concentration and treatment day were analysed by repeated-measures ANOVA with Bonferroni-corrected pairwise post hoc comparisons. Peak temperatures were compared by Wilcoxon's signed rank test and proportions by McNemar's related samples test. Significance was set at P<0.05.
Results:
There were significant 2-factor interactions for treatment × terbutaline after baseline, treatment × day at every terbutaline concentration, and day × terbutaline for erythromycin (P<0.001) but not control (P = 0.9) treatment. Sweating was significantly reduced from baseline in erythromycin-treated foals at all subsequent days. Erythromycin-treated foals produced less sweat at all time-points than did control-treated foals (P<0.05). Peak rectal temperatures of erythromycin-treated foals were significantly higher (P = 0.02) than those of controls. During the first 3 days outside more erythromycin-treated than control-treated foals required treatment for hyperthermia (6 vs. 0; P = 0.03).
Conclusions:
We believe drug-induced anhidrosis is the likely cause of hyperthermia in some foals treated with erythromycin.
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