Guerrini Alessandro, Morandi Benedetto, Roncada Paola, Brambilla Gianfranco, Dini Filippo Maria, Galuppi Roberta
Department of Veterinary Medical Sciences, University of Bologna, Via Tolara di Sopra 50, Ozzano dell'Emilia, 40064 Bologna, Italy.
Istituto Zooprofilattico Sperimentale dell'Umbria e delle Marche "Togo Rosati", Via Salvemini 1, 06126 Perugia, Italy.
Vet Sci. 2022 Sep 8;9(9):486. doi: 10.3390/vetsci9090486.
The poultry red mite Dermanyssus gallinae is the most important blood-sucking ectoparasite in egg-laying hen facilities. The aim of this study was to evaluate the in vitro acaricidal activity of different concentration of authorized (phoxim, ByeMite®, 500 mg/mL) and unauthorized (fipronil, Frontline® 250 mg/100 mL spray) molecules on 14 field isolates of D. gallinae collected from different ornamental poultry farms from different Italian regions. The sensitivity test was performed by contact exposure to four concentrations of each insecticide diluted at 1:5 (10,000-2000-400-80 ppm for phoxim, 500-100-20-4 ppm for fipronil) on a filter paper. The effectiveness of the treatment was significantly (p < 0.0001) associated with the dose of the pesticide used. Considering the mean lethality, phoxim has greater efficacy compared to fipronil (p < 0.001). A great variability of lethality rate was observed with the increase in fipronil dilution; conversely, for phoxim, some outliers were observed, particularly in one farm, suggesting the hypothesis that a certain degree of resistance in the mite population could occur possibly as a consequence of the continual contact with the molecule. This underlines the importance of the use of licensed products administered at correct dosages and the need for alternative molecules to avoid the onset of drug resistance phenomena.
鸡皮刺螨是蛋鸡养殖设施中最重要的吸血性体外寄生虫。本研究旨在评估不同浓度的已获授权分子(辛硫磷,拜螨,500毫克/毫升)和未获授权分子(氟虫腈,福来恩250毫克/100毫升喷雾)对从意大利不同地区不同观赏禽场采集的14株鸡皮刺螨野外分离株的体外杀螨活性。敏感性试验通过在滤纸上接触四种浓度的每种杀虫剂进行,每种杀虫剂按1:5稀释(辛硫磷为10,000 - 2000 - 400 - 80 ppm,氟虫腈为500 - 100 - 20 - 4 ppm)。处理效果与所用农药剂量显著相关(p < 0.0001)。考虑平均致死率,辛硫磷比氟虫腈具有更高的效力(p < 0.001)。随着氟虫腈稀释度增加,观察到致死率有很大差异;相反,对于辛硫磷,观察到一些异常值,特别是在一个养殖场,这表明可能由于螨虫群体与该分子持续接触而产生一定程度抗性的假设。这突出了使用正确剂量的许可产品的重要性以及需要替代分子以避免耐药现象的发生。