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基于纳米乳剂的植物精油配方:体外评估其对禽类外寄生虫的杀虫活性。

Nanoemulsion-based plant essential oil formulations: in vitro evaluation of pesticidal activity against ectoparasites in poultry.

机构信息

School of Agricultural Technology, King Mongkut's Institute of Technology Ladkrabang, Bangkok 10520, Thailand.

School of Agricultural Technology, King Mongkut's Institute of Technology Ladkrabang, Bangkok 10520, Thailand.

出版信息

Poult Sci. 2024 Jan;103(1):103245. doi: 10.1016/j.psj.2023.103245. Epub 2023 Oct 30.

Abstract

Ectoparasite infestations significantly impact the health and productivity of poultry. Chemical applications, although common for pest control, lead to pesticide residues and parasite resistance in poultry. Nanoemulsion-based plant essential oil formulations (NEOFs) provide a promising alternative for controlling poultry ectoparasites. This study aimed to assess the efficacy of NEOFs from clove, cinnamon, and turmeric essential oils (EOs) against ectoparasites, Menopon gallinae and Megninia ginglymura, under laboratory conditions. The toxicity and repellent properties of the NEOFs were examined, with the major chemical compounds of the EOs analyzed using chromatography mass spectrometer. Results identified eugenol as the dominant component in clove and cinnamon EOs (84.60 and 75.19%, respectively), while turmerone (68.46%) was the major compound in turmeric EO. NEOFs with clove:cinnamon:turmeric ratios of 4:0:0, 2:2:0, and 2:0:2 had particle size of 20.76 nm, 20.66 nm, and 89.56 nm, respectively, while those based on eugenol and turmerone standards had sizes <21.0 nm. In addition, NEOFs at 0.3% concentration with ratios of 4:0:0 and 2:2:0 achieved full control of both ectoparasites. These formulas demonstrated exceptional potency in exterminating ectoparasites, with LC and LC at <0.160 and <0.250%, respectively, 6 h after treatments. Furthermore, both NEOFs showed higher repellence responses in M. gallinae compared to M. ginglymura. The toxicities of these NEOFs were comparably effective against both parasites, showing no significant difference compared with chemical insecticide treatment. Therefore, further research will explore the practicality of using clove and cinnamon-derived NEOFs under farm conditions.

摘要

外寄生虫的侵扰严重影响家禽的健康和生产力。尽管化学应用常用于控制害虫,但会导致家禽中农药残留和寄生虫耐药性的产生。基于纳米乳液的植物精油制剂(NEOFs)为控制家禽外寄生虫提供了一种有前途的替代方法。本研究旨在评估丁香、肉桂和姜黄精油(EOs)的 NEOFs 对实验室条件下的外寄生虫鸡皮刺螨和羽虱的功效。研究了 NEOFs 的毒性和驱避特性,并使用色谱质谱仪分析了 EOs 的主要化学化合物。结果表明,丁香和肉桂 EO 中的丁香酚(84.60%和 75.19%)是主要成分,而姜黄 EO 中的姜酮(68.46%)是主要化合物。丁香:肉桂:姜黄比例为 4:0:0、2:2:0 和 2:0:2 的 NEOFs 的粒径分别为 20.76nm、20.66nm 和 89.56nm,而基于丁香酚和姜酮标准的 NEOFs 的粒径均小于 21.0nm。此外,浓度为 0.3%、比例为 4:0:0 和 2:2:0 的 NEOFs 可完全控制两种外寄生虫。这些配方在消灭外寄生虫方面表现出非凡的功效,处理后 6 小时 LC 和 LC 均低于<0.160 和<0.250%。此外,与 M. ginglymura 相比,这两种 NEOFs 对 M. gallinae 均表现出更高的驱避反应。这些 NEOFs 的毒性对两种寄生虫均有效,与化学杀虫剂处理相比,无显著差异。因此,将进一步研究在农场条件下使用丁香和肉桂衍生的 NEOFs 的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6564/10801651/4fc98e71d9f0/gr1.jpg

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