Fipronil prevents transmission of Lyme disease spirochetes.

IF 2.4 3区 医学 Q2 PARASITOLOGY Parasitology Pub Date : 2024-08-01 Epub Date: 2024-11-20 DOI:10.1017/S0031182024001136
Radek Šíma, Adéla Palusová, Tereza Hatalová, Luise Robbertse, Petra Berková, Martin Moos, Petr Kopáček, Veronika Urbanová, Jan Perner
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Abstract

Lyme disease, a tick-borne illness caused by Borrelia spirochetes, poses a significant threat to public health. While acaricides effectively control ticks on pets and livestock, their impact on pathogen transmission is often unclear. This study investigated the acaricidal efficacy of fipronil against Ixodes ricinus ticks and its potential to block Borrelia afzelii transmission. Initially, we employed the ex vivo membrane blood-feeding system to assess the dose–response acaricidal activity of ivermectin, fipronil and its metabolite fipronil sulfone, when supplemented in the blood meal throughout tick feeding. To obtain the temporal resolution of their acaricidal activity, ticks were allowed to initiate blood feeding on an artificial membrane before being exposed to a 1-time topical application of these acaricides. Fipronil demonstrated superior speed of acaricidal activity, with onset of tick moribundity within a few hours, prompting its selection for further in vivo testing with Borrelia-infected ticks. The I. ricinus nymphs infected with B. afzelii were topically treated with fipronil shortly after attachment to mice. Four weeks post-feeding, the skin and internal organs were examined for the presence of Borrelia. No spirochetes were detected in any organ of mice exposed to fipronil-treated ticks, while 9 out of 10 control mice, exposed to non-treated infectious ticks, displayed Borrelia infection. The in vitro co-culture experiments confirmed that fipronil had no direct effect on Borrelia viability, indicating a tick-directed effect. Overall, these results underline the potential of fipronil as a valuable tool for tick control strategies and suggest a concept for acaricide-mediated Borrelia-transmission blockers.

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氟虫腈可防止莱姆病螺旋体的传播。
莱姆病是一种由螺旋体疏螺旋体引起的蜱传疾病,对公众健康构成重大威胁。虽然杀螨剂能有效控制宠物和牲畜身上的蜱虫,但它们对病原体传播的影响往往不清楚。本研究探讨了氟虫腈对蓖麻蜱的杀螨效果及其阻断阿氏疏螺旋体传播的潜力。最初,我们采用离体膜血供系统来评估伊维菌素、氟虫腈及其代谢物氟虫腈砜在蜱虫饲养过程中添加到血粉中的剂量-反应杀螨活性。为了获得其杀螨活性的时间分辨率,在暴露于1次局部应用这些杀螨剂之前,允许蜱在人工膜上开始吸血。氟虫腈具有更快的杀螨活性,蜱虫在几小时内开始死亡,这促使人们选择氟虫腈对感染伯氏疏螺旋体的蜱虫进行进一步的体内试验。感染阿兹利亚杆菌的蓖麻螨若虫在附着于小鼠后不久局部用氟虫腈处理。喂养四周后,检查皮肤和内脏是否存在伯氏疏螺旋体。暴露于氟虫腈处理的蜱虫的小鼠的任何器官中未检测到螺旋体,而暴露于未处理的感染性蜱虫的对照组小鼠中,10只中有9只显示伯氏疏螺旋体感染。体外共培养实验证实,氟虫腈对伯氏疏螺旋体的生存能力没有直接影响,表明有蜱定向作用。总的来说,这些结果强调了氟虫腈作为蜱虫控制策略的有价值工具的潜力,并提出了杀螨剂介导的疏螺旋体传播阻断剂的概念。
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来源期刊
Parasitology
Parasitology 医学-寄生虫学
CiteScore
4.80
自引率
4.20%
发文量
280
审稿时长
3-8 weeks
期刊介绍: Parasitology is an important specialist journal covering the latest advances in the subject. It publishes original research and review papers on all aspects of parasitology and host-parasite relationships, including the latest discoveries in parasite biochemistry, molecular biology and genetics, ecology and epidemiology in the context of the biological, medical and veterinary sciences. Included in the subscription price are two special issues which contain reviews of current hot topics, one of which is the proceedings of the annual Symposia of the British Society for Parasitology, while the second, covering areas of significant topical interest, is commissioned by the editors and the editorial board.
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