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1.
J Vet Pharmacol Ther ; 45(1): 23-33, 2022 Jan.
Article in English | MEDLINE | ID: mdl-34331772

ABSTRACT

Fipronil (FIP) is an ectoparasiticide of the phenylpyrazole class, used in veterinary medicine in topical form. Supported by evidence of uncontrolled human exposure to FIP and environmental damage caused by commercially available formulations, its use by oral administration has become promising. The effectiveness of FIP against the flea Ctenocephalides felis felis and the tick Rhipicephalus sanguineus and its pharmacokinetics and main active metabolite, fipronil sulfone (SULF) were evaluated after single oral administration of tablets in three different doses (2, 4, and 6 mg/kg) in dogs. Through the plasma concentration curves, it was possible to observe that the FIP showed rapid absorption and metabolization and slow elimination. The values of Cmax (ß = 0.7653) and AUC0- t (ß = 0.3209) did not increase proportionally with increasing dose. At 48 h after treatment, doses of 4 mg/kg (AUC0- t  = 442.39 ± 137.35 µg/ml*h) and 6 mg/kg (AUC0- t  = 421.32 ± 102.84 µg/ml*h) provided 100% and 99% efficacy against fleas, and 95% and 98% against ticks, respectively. The estimated EC90 of FIP +SULF was 1.30 µg/ml against C. felis felis and 2.16 µg/ml against R. sanguineus. The correlation between the FIP pharmacokinetic and efficacy data demonstrated its potential for oral administration in the form of tablets for the control of ectoparasites in dogs, as a safer alternative for animals, humans, and the environment, aligned with the One Health concept.


Subject(s)
Dog Diseases , Flea Infestations , Insecticides , Rhipicephalus sanguineus , Siphonaptera , Tick Infestations , Administration, Oral , Animals , Dog Diseases/drug therapy , Dogs , Flea Infestations/drug therapy , Flea Infestations/veterinary , Insecticides/therapeutic use , Pyrazoles , Tick Infestations/drug therapy , Tick Infestations/veterinary
2.
Parasitology ; 147(3): 340-347, 2020 03.
Article in English | MEDLINE | ID: mdl-31840630

ABSTRACT

Essential oils (EOs) are considered a new class of ecological products aimed at the control of insects for industrial and domestic use; however, there still is a lack of studies involving the control of fleas. Ctenocephalides felis felis, the most observed parasite in dogs and cats, is associated with several diseases. The aim of this study was to evaluate the in vitro activity, the establishment of LC50 and toxicity of EOs from Alpinia zerumbet (Pers.) B. L. Burtt & R. M. Sm, Cinnamomum spp., Laurus nobilis L., Mentha spicata L., Ocimum gratissimum L. and Cymbopogon nardus (L.) Rendle against immature stages and adults of C. felis felis. Bioassay results suggest that the method of evaluation was able to perform a pre-screening of the activity of several EOs, including the discriminatory evaluation of flea stages by their LC50. Ocimum gratissimum EO was the most effective in the in vitro assays against all flea stages, presenting adulticide (LC50 = 5.85 µg cm-2), ovicidal (LC50 = 1.79 µg cm-2) and larvicidal (LC50 = 1.21 µg cm-2) mortality at low doses. It also presented an excellent profile in a toxicological eukaryotic model. These findings may support studies involving the development of non-toxic products for the control of fleas in dogs and cats.


Subject(s)
Ctenocephalides , Insect Control , Insecticides , Oils, Volatile , Alpinia/chemistry , Animals , Cinnamomum/chemistry , Ctenocephalides/growth & development , Cymbopogon/chemistry , In Vitro Techniques , Larva/growth & development , Laurus/chemistry , Mentha spicata/chemistry , Ocimum/chemistry , Ovum/growth & development
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