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Time to Micromanage the Pathogen-Host-Vector Interface: Considerations for Vaccine Development

机译:是时候对病原体-宿主-载体界面进行微管理了:疫苗开发的注意事项

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摘要

The current increase in vector-borne disease worldwide necessitates novel approaches to vaccine development targeted to pathogens delivered by blood-feeding arthropod vectors into the host skin. A concept that is gaining traction in recent years is the contribution of the vector or vector-derived components, like salivary proteins, to host-pathogen interactions. Indeed, the triad of vector-host-pathogen interactions in the skin microenvironment can influence host innate and adaptive responses alike, providing an advantage to the pathogen to establish infection. A better understanding of this “bite site” microenvironment, along with how host and vector local microbiomes immunomodulate responses to pathogens, is required for future vaccines for vector-borne diseases. Microneedle administration of such vaccines may more closely mimic vector deposition of pathogen and saliva into the skin with the added benefit of near painless vaccine delivery. Focusing on the ‘micro’–from microenvironments to microbiomes to microneedles–may yield an improved generation of vector-borne disease vaccines in today’s increasingly complex world.
机译:目前全球范围内媒介传播疾病的增加,需要针对以血液中节肢动物媒介进入宿主皮肤的病原体为目标的新型疫苗开发方法。近年来越来越受到关注的一个概念是载体或载体衍生的成分(如唾液蛋白)对宿主-病原体相互作用的贡献。确实,皮肤微环境中载体-宿主-病原体相互作用的三联体可同样影响宿主的先天和适应性反应,为病原体建立感染提供了优势。未来针对媒介传播疾病的疫苗需要更好地了解这种“叮咬位点”微环境,以及宿主和载体局部微生物群如何免疫调节对病原体的反应。此类疫苗的微针给药可以更接近地模拟病原体和唾液在皮肤中的载体沉积,并具有近乎无痛的疫苗输送优势。在当今日益复杂的世界中,关注“微观”(从微观环境到微生物群落再到微针),可能会产生更多的媒介传播疾病疫苗。

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