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抗蜱疫苗与大环内酯类药物的相互作用提高了对感染实验牛的 Rhipicephalus (Boophilus) microplus (Canestrini) (蜱螨目:硬蜱科)的杀蜱效果。

Interaction between anti-tick vaccine and a macrocyclic lactone improves acaricidal efficacy against Rhipicephalus (Boophilus) microplus (Canestrini) (Acari: Ixodidae) in experimentally infested cattle.

机构信息

Department of Entomology, Texas A&M AgriLife Research, College Station, TX, USA.

USDA ARS Office of National Programs, George Washington Carver Center, 5601 Sunnyside Avenue, Beltsville, MD 20705, USA; Cattle Fever Tick Research Laboratory, USDA-ARS, 22675 N. Moorefield Road, Edinburg, TX 78541, USA.

出版信息

Vaccine. 2022 Nov 8;40(47):6795-6801. doi: 10.1016/j.vaccine.2022.10.001. Epub 2022 Oct 14.

Abstract

The southern cattle fever tick (SCFT) Rhipicephalus (Boophilus) microplus, is considered the most important ectoparasite of livestock in the world because of high financial losses associated with direct feeding and transmission of the hemoparasites Babesia bovis, B. bigemina, and Anaplasma marginale. Unfortunately, SCFT in many parts of the world have evolved resistance to all market-available pesticides thus driving development of new control technologies. Vaccination against ticks using the tick gut protein Bm86 has been shown to be effective against acaricide-resistant ticks. This technique has been successfully implemented in Puerto Rico for the control of acaricide-resistant R. microplus on dairy and beef cattle. Observations from Puerto Rico indicate a potentially positive interaction between anti-tick vaccination when used in conjunction with systemic acaricide treatment. In this project, controlled animal studies were completed directly comparing efficacy of anti-tick vaccination with and without systemic acaricide. Results show that the Bm86 anti-tick vaccine in combination with the macrocyclic lactone, Moxidectin, expressed a synergistic interaction, providing greater and longer efficacy than either treatment alone.

摘要

南方牛蜱(SCFT),也称嗜吞噬细胞无形体(Boophilus)microplus,被认为是世界上最重要的家畜外寄生虫,因为它直接吸食血液并传播血液寄生虫巴贝斯虫、双芽巴贝斯虫和边缘无形体,给畜牧业带来了巨大的经济损失。不幸的是,世界上许多地区的 SCFT 已经对所有市售杀虫剂产生了抗药性,这促使了新的控制技术的发展。利用 tick gut protein Bm86 对 tick 进行疫苗接种已被证明对杀螨剂耐药的 tick 有效。这种技术已经在波多黎各成功实施,用于控制抗杀螨剂的 R. microplus 对奶牛和肉牛的侵害。波多黎各的观察结果表明,在联合使用系统杀螨剂治疗时,抗 tick 疫苗接种可能会产生积极的相互作用。在这个项目中,通过直接比较抗 tick 疫苗接种与系统杀螨剂治疗的效果,完成了对照动物研究。结果表明,Bm86 抗 tick 疫苗与大环内酯类莫昔克丁联合使用表现出协同作用,提供了比单独使用任何一种治疗方法更有效和更持久的效果。

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