ECG alterations and changes in biochemical parameters associated with experimental salinomycin toxicosis in sheep

Message:
Abstract:
alinomycin is a monocarboxylic polyether ionophore with antimicrobial properties. It is a dietary dditive used as a growth promoter for ruminants and as a coccidiostat in chickens. The echanism of action f ionophores at the cellular level is to selectively bind certain ions creating intra and extracellular iochemical disturbances. Clinical signs of ionophore intoxication are non specific and similar in all pecies nd include tachycardia، muscle tremor، restlessness، loss of appetite، incoordination، muscular eakness and continual panting. The present study was conducted to determine the changes in CG parameters and ossible arrhythmias and their types due to experimental salinomycin toxicosis in sheep. Acute oxicity with he ionophore (0. 5 mg/kg; intravenously) was induced in 6 mixed breed female sheep. A orresponding olume of sterile saline was intravenously injected in each control sheep (n=6). Blood samples ere collected before and at various time intervals after the administration of either salinomycin or saline solutions. Following centrifugation، serum biochemical parameters (ALT، AST، CK، LDH and total protein) were measured using conventional laboratory methods. In both groups، the heart sounds of sheep were carefully monitored and the electrocardiogram (ECG) was recorded. Salinomycin caused a significant (P<0. 05) increase in the levels of ALT، AST، LDH and CK in the experimental animals. The mean heart rate in the control group was significantly lower than that in the experimental sheep. Numerous arrhythmias such as sinus tachycardia (11 cases)، ventricular premature contraction (2 cases) and T-wave inversion (cases) were recorded in the experimental sheep. Acute salinomycin intoxication seems to cause numerous arrhythmias in sheep which might be due to the pathological effect of the ionophore on the myocardium.
Language:
English
Published:
Iranian Journal of Veterinary Research, Volume:14 Issue: 2, Spring 2013
Pages:
120 to 125
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