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Understanding the Liver-Stage Biology of Malaria Parasites: Insights to Enable and Accelerate the Development of a Highly Efficacious Vaccine

机译:了解疟疾寄生虫的肝脏阶段生物学:见解启用和加速高效疫苗的发展

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摘要

In August 2017, the National Institute of Allergy and Infectious Diseases convened a meeting, entitled "Understanding the Liver-Stage Biology of Malaria Parasites to Enable and Accelerate the Development of a Highly Efficacious Vaccine," to discuss the needs and strategies to develop a highly efficacious, whole organism-based vaccine targeting the liver stage of malaria parasites. It was concluded that attenuated sporozoite platforms have proven to be promising approaches, and that late-arresting sporozoites could potentially offer greater vaccine performance than early-arresting sporozoites against malaria. New knowledge and emerging technologies have made the development of late-arresting sporozoites feasible. Highly integrated approaches involving liver-stage research, "omics" studies, and cutting-edge genetic editing technologies, combined with in vitro culture systems or unique animal models, are needed to accelerate the discovery of candidates for a late-arresting, genetically attenuated parasite vaccine.
机译:2017年8月,国家过敏和传染病研究所召开会议,题为“了解疟疾寄生虫的肝脏阶段生物学,使得能够加速高度有效的疫苗的发展”,讨论高度发展的需求和策略有效,整个有机体的疫苗靶向疟疾寄生虫的肝阶段。结论是,减毒的孢子型平台已被证明是有前途的方法,而迟到的孢子生殖术可能比早期逮捕疟疾的早期孢子生殖性能提供更大的疫苗表现。新知识和新兴技术使得延迟逮捕孢子的发展是可行的。涉及肝阶段研究的高度综合方法,“OMICS”研究以及尖端的遗传编辑技术,与体外培养系统或独特的动物模型相结合,以加速候选人的发现,转基因减毒寄生虫疫苗。

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