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From Bench to Field: A Guide to Formulating and Evaluating Anti-Tick Vaccines Delving beyond Efficacy to Effectiveness

期刊

VACCINES
卷 9, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/vaccines9101185

关键词

anti-tick vaccine; anti-tick vaccine efficacy; anti-tick vaccine effectiveness; anti-tick vaccine protection

资金

  1. Uganda Government

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Ticks are blood-sucking ectoparasites capable of transmitting various pathogens, and while the predominant method of control is the use of acaricides, there are concerns over resistance and residue accumulation. Anti-tick cattle vaccination is seen as a sustainable alternative, but often shows lower efficacy compared to the Bm86-based vaccines. Current approaches to assess vaccine effectiveness and potential bottlenecks are examined in this review, along with a proposed model to aid in the assessment process.
Ticks are ubiquitous blood-sucking ectoparasites capable of transmitting a wide range of pathogens such as bacteria, viruses, protozoa, and fungi to animals and humans. Although the use of chemicals (acaricides) is the predominant method of tick-control, there are increasing incidents of acaricide tick resistance. Furthermore, there are concerns over accumulation of acaricide residues in meat, milk and in the environment. Therefore, alternative methods of tick-control have been proposed, of which anti-tick cattle vaccination is regarded as sustainable and user-friendly. Over the years, tremendous progress has been made in identifying and evaluating novel candidate tick vaccines, yet none of them have reached the global market. Until now, Bm86-based vaccines (Gavac (TM) in Cuba and TickGARD(PLUS)(TM) Australia-ceased in 2010) are still the only globally commercialized anti-tick vaccines. In contrast to Bm86, often, the novel candidate anti-tick vaccines show a lower protection efficacy. Why is this so? In response, herein, the potential bottlenecks to formulating efficacious anti-tick vaccines are examined. Aside from Bm86, the effectiveness of other anti-tick vaccines is rarely assessed. So, how can the researchers assess anti-tick vaccine effectiveness before field application? The approaches that are currently used to determine anti-tick vaccine efficacy are re-examined in this review. In addition, a model is proposed to aid in assessing anti-tick vaccine effectiveness. Finally, based on the principles for the development of general veterinary vaccines, a pipeline is proposed to guide in the development of anti-tick vaccines.

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