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Predicted outcomes of vaccinating wildlife to reduce human risk of lyme disease

机译:接种野生动植物以降低人类莱姆病风险的预期结果

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Vaccination efforts for Lyme disease prevention in humans have focused on wildlife reservoirs to target the causative agent, Borrelia burgdorferi, for elimination in vector ticks. Multiple host species are involved in the transmission and maintenance of the bacterium, but not all host species can be vaccinated effectively. To evaluate vaccinating a subset of hosts in the context of host-tick interactions, we constructed and evaluated a dynamic model of B. burgdorferi transmission in mice. Our analyses indicate that on average, a mouse-targeted vaccine is expected to proportionally reduce infection prevalence among ticks by 56%. However, relative to mouse vaccination, human risk of exposure is dominated by the number of tick bites received per person, the proportion of tick blood meals taken from the highly reservoir-competent white-footed mouse relative to other hosts, and the average number of tick bites per mouse. Variation in these factors reduces the predictability of vaccination outcomes. Additionally, contributions of nonmouse hosts to pathogen maintenance preclude elimination of B. burgdorferi through mouse vaccination alone. Our findings indicate that to increase the impact of wildlife vaccination, reducing tick populations by acaricide application, in addition to targeting additional reservoir-competent host species, should be employed.
机译:预防人类莱姆病的疫苗接种工作已集中在野生生物水库上,以消除病原体博氏疏螺旋体为目标。细菌的传播和维持涉及多种宿主物种,但并非所有宿主物种都可以有效接种疫苗。为了评估在宿主-壁虱相互作用的背景下接种宿主的子集,我们构建并评估了伯氏疏螺旋体在小鼠中传播的动力学模型。我们的分析表明,平均而言,以小鼠为靶标的疫苗有望使tick之间的感染率成比例降低56%。然而,相对于小鼠疫苗接种而言,人类暴露的风险主要取决于每人收到的tick叮咬次数,从具有高度贮水能力的白脚老鼠身上吸取的tick血粉相对于其他宿主的比例,以及每只老鼠的滴答声。这些因素的差异降低了疫苗接种结果的可预测性。另外,非小鼠宿主对病原体维持的贡献排除了仅通过小鼠疫苗接种就消除了伯氏疏螺旋体。我们的研究结果表明,除了针对其他具有水库能力的寄主物种外,还应采用增加杀虫剂免疫力的方法,通过使用杀螨剂来减少tick虫种群。

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