Contribution to the epidemiology of paracoccidioidomycosis and histoplasmosis in the state of Sáo Paulo, Brazil. Paracoccidioidin and histoplasmin intradermic tests in domestic animals.
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In 6 cats, mean +/- SEM baseline plasma concentrations of cortisol, corticotropin, and alpha-melanocyte-stimulating hormone (alpha-MSH) were 87 +/- 16 nmol/L, 73 +/- 14 ng/L, and 129 +/- 12 ng/L, respectively. The cats were subjected to: handling and subsequent skin testing without anesthesia; anesthesia with 50 mg of ketamine HCl and 2.5 mg of diazepam given IV, immediately followed by handling and skin testing; and anesthesia and handling as previously described, but without skin testing. Significant (P < 0.05; multivariate analysis for repeated measures) increase in plasma cortisol, corticotropin, and alpha-MSH concentrations was observed until 20 minutes after the start of the experiments in cats undergoing physical restraint and subsequent skin testing with or without preceding anesthesia. These responses were largely abolished when anesthesia with ketamine and diazepam was only followed by handling. We conclude that, during stress in cats (in contrast to dogs), the pituitary intermediate lobe is activated to secrete alpha-MSH. In addition, the cortisol response after skin testing of cats under anesthesia may be a reasonable explanation for the reported weak skin test reactivity in cats.
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Serum cortisol concentration was evaluated in 71 dogs before and after a stressful procedure was performed. Thirty dogs were skin tested with sedation (group S), 21 dogs were skin tested without sedation (group NS), and 20 dogs had other dermatologic procedures performed (group C). Group-S dogs had significant (P less than 0.001) decrease in serum cortisol concentration after skin testing, compared with baseline values. In contrast, dogs of groups NS and C had significant (P less than 0.001) increase in poststress serum cortisol concentration. Mean cortisol concentration after stress was significantly lower for dogs of group S, compared with that for dogs of the other 2 groups. The second part of the analysis consisted of determining the number of false-negative skin test results for dogs of groups S and NS and comparing these with serum cortisol concentration. Difference in the number of suspected atopic dogs with negative skin test results (false-negative) was not evident between groups S and NS. Also, difference was not apparent between cortisol concentration in dogs that had positive or false-negative skin test results in either group. This finding indicates that high serum cortisol concentration does not affect results of skin testing in suspected atopic dogs.
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