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1.
Vet Parasitol ; 246: 118-123, 2017 Nov 15.
Article in English | MEDLINE | ID: mdl-28969774

ABSTRACT

Haemonchus contortus is the most important nematode in small ruminant systems, and has developed tolerance to all commercial anthelmintics in several countries. In vitro (egg hatch assay) and in vivo tests were performed with a multidrug strain of Haemonchus contortus using Terminalia catappa leaf, fruit pulp, and seed extracts (in vitro), or pulp and seed powder in lambs experimentally infected with H. contortus. Crude extracts from leaves, fruit pulp and seeds obtained with 70% acetone were lyophilized until used. In vitro, the extracts had LC50=2.48µg/mL (seeds), LC50=4.62µg/mL (pulp), and LC50=20µg/mL (leaves). In vitro, seed and pulp extracts had LC50 similar to Thiabendazole (LC50=1.31µg/mL). Condensed tannins were more concentrated in pulp extract (183.92g of leucocyanidin/kg dry matter) than in either leaf (4.6g) or seed (35.13g) extracts. Phytochemical tests established that all extracts contained alkaloids, flavonoids, saponins, phenols, and terpenoids. Based on these results, in vivo tests were performed to evaluate the anthelmintic activity of T. catappa whole fruit (pulp+seed) powder. Male Santa Ines lambs were artificially infected with multidrug-resistant H. contortus and divided, according to similar fecal egg count (FEC) and weight, into two groups: Control (infected/untreated) and treated (infected/treated with whole fruit powder). Whole fruit powder was mixed with concentrate and provided at 2g/kg of body weight (BW) for five days. After treatment, parasitological analysis (FEC and egg hatch assay), renal profile (urea and creatinine), liver profile (aspartate aminotransferase) and BW were determined. In vitro (based on LC50), seed/pulp extracts had ovicidal effect similar to Thiabendazole but whole fruit powder had no anthelmintic effect on adult nematodes in the abomasum. We discuss the plausible causes of the lack of in vivo activity.


Subject(s)
Haemonchiasis/drug therapy , Haemonchiasis/veterinary , Plant Extracts/therapeutic use , Sheep Diseases/parasitology , Terminalia/chemistry , Animals , Anthelmintics/therapeutic use , Fruit , Haemonchus/drug effects , Male , Parasite Egg Count/veterinary , Phytotherapy , Plant Extracts/chemistry , Plant Leaves/chemistry , Seeds/chemistry , Sheep , Sheep Diseases/drug therapy
2.
Vet Parasitol ; 243: 47-51, 2017 Aug 30.
Article in English | MEDLINE | ID: mdl-28807309

ABSTRACT

Anthelmintic resistance in sheep gastrointestinal nematodes is a worldwide problem. Multi-drug resistant haemonchosis is the most serious impediment for small ruminant systems, and there are no new drug candidates currently under development. Molecules from natural sources have demonstrated anthelmintic activity against parasites. In this work, the monoterpenoids carvacrol, carvone, cineole, linalool, limonene, and thymol and the phenylpropanoids cinnamaldehyde, anethole, vanillin, and eugenol were assessed individually or in mixtures of ten binary, three ternary, and three quaternary combinations using the in vitro egg hatch assay with eggs of a multi-drug resistant strain of Haemonchus contortus. The main objective of this study was to identify the most effective interaction among essential oils with the greatest individual anthelmintic efficacy and to determine the most powerful combinations. The essential oils were ranked by their 50% lethal concentration (LC50) as follows (mg/mL): cinamaldehyde (0.018), anethole (0.070), carvone (0.085), carvacrol (0.11), thymol (0.13), linalool (0.29), vanillin (0.57), eugenol (0.57), cineole (4.74), and limonene (207.5). Quantification of synergism, additive effect, and antagonism were calculated for binary, ternary, and quaternary combinations. The best anthelmintic effect resulting from synergistic activity among 16 different combinations was for cinnamaldehyde:carvacrol (CL50 0.012mg/mL) and anethole:carvone (CL50 0.013mg/mL). These results indicate that these binary combinations would be promising to be tested in sheep infected with H. contortus.


Subject(s)
Anthelmintics/pharmacology , Haemonchiasis/veterinary , Haemonchus/drug effects , Oils, Volatile/pharmacology , Plant Oils/pharmacology , Sheep Diseases/drug therapy , Animals , Drug Synergism , Haemonchiasis/drug therapy , Haemonchiasis/parasitology , Monoterpenes/pharmacology , Sheep , Sheep Diseases/parasitology
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