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Vector biology meets disease control: using basic research to fightvector-borne diseases

机译:媒介生物学满足疾病控制:利用基础研究来抗击媒介传播疾病

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摘要

Human pathogens that are transmitted by insects are a global problem, particularly those vectored by mosquitoes; for example, malaria parasites transmitted by Anopheles species, and viruses such as dengue, Zika and chikungunya that are carried by Aedes mosquitoes. Over the past 15 years, the prevalence of malaria has been substantially reduced and virus outbreaks have been contained by controlling mosquito vectors using insecticide-based approaches. However, disease control is now threat-ened by alarming rates of insecticide resistance in insect populations, prompting the need to develop a new generation of specific strategies that can reduce vector-mediated transmission. Here, we review how increased knowledge in insect biology and insect–pathogen interactions is stimulating new concepts and tools for vector control. We focus on strategies that either interfere with the development of pathogens within their vectors or directly impact insect survival, including enhancement of vector-mediated immune control, manipulation of the insect microbiome, or use of powerful new genetic tools such as CRISPR– Cas systems to edit vector genomes. Finally, we offer a perspective on the implementation hurdles as well as the knowledge gaps thatmust be filled in the coming years to safely realize the potential of thesenovel strategies to eliminate the scourge of vector-borne disease.
机译:昆虫传播的人类病原体是一个全球性问题,尤其是由蚊子传播的病原体。例如,按蚊属物种传播的疟疾寄生虫,以及由伊蚊传播的登革热,寨卡病毒和基孔肯雅病毒。在过去的15年中,通过使用基于杀虫剂的方法控制蚊媒,疟疾的发病率已大大降低,并控制了病毒的爆发。但是,现在,由于昆虫种群中对杀虫剂的抗药性达到惊人的水平,疾病控制受到了威胁,这促使人们需要开发新一代的特定策略,以减少载体介导的传播。在这里,我们将回顾昆虫生物学和昆虫与病原体相互作用的知识如何刺激媒介控制的新概念和新工具。我们专注于干扰其载体内病原体的发展或直接影响昆虫生存的策略,包括增强载体介导的免疫控制,操纵昆虫微生物组或使用功能强大的新型遗传工具(如CRISPR–Cas系统)编辑载体基因组。最后,我们提供了有关实施障碍以及存在的知识空白的观点在未来几年中必须充实以安全地实现这些潜力消除媒介传播疾病祸害的新颖策略。

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  • 总页数 34
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