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Artemisinin-based antimalarial research: application of biotechnology to the production of artemisinin its mode of action and the mechanism of resistance of Plasmodium parasites

机译:基于青蒿素的抗疟研究:生物技术在青蒿素生产中的应用其作用方式以及对疟原虫的抗性机制

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摘要

Malaria is a worldwide disease caused by Plasmodium parasites. A sesquiterpene endoperoxide artemisinin isolated from Artemisia annua was discovered and has been accepted for its use in artemisinin-based combinatorial therapies, as the most effective current antimalarial treatment. However, the quantity of this compound produced from the A. annua plant is very low, and the availability of artemisinin is insufficient to treat all infected patients. In addition, the emergence of artemisinin-resistant Plasmodium has been reported recently. Several techniques have been applied to enhance artemisinin availability, and studies related to its mode of action and the mechanism of resistance of malaria-causing parasites are ongoing. In this review, we summarize the application of modern technologies to improve the production of artemisinin, including our ongoing research on artemisinin biosynthetic genes in other Artemisia species. The current understanding of the mode of action of artemisinin as well as the mechanism of resistance against this compound in Plasmodium parasites is also presented. Finally, the current situation of malaria infection and the future direction of antimalarial drug development are discussed.
机译:疟疾是由疟原虫寄生虫引起的全球性疾病。从青蒿中分离出的倍半萜内过氧化物青蒿素被发现,并已被接受作为基于青蒿素的组合疗法的使用,是目前最有效的抗疟疾治疗方法。但是,从A.annua植物生产的这种化合物的数量非常低,青蒿素的可用性不足以治疗所有感染的患者。另外,最近已经报道了抗青蒿素的疟原虫的出现。已经应用了多种技术来增强青蒿素的利用率,并且正在进行有关其作用方式和引起疟疾的寄生虫的抗性机制的研究。在这篇综述中,我们总结了现代技术在提高青蒿素生产中的应用,包括我们对其他青蒿物种中青蒿素生物合成基因的持续研究。还介绍了目前对青蒿素的作用方式的理解以及对疟原虫寄生虫的耐药性机理。最后,讨论了疟疾感染的现状和抗疟药物开发的未来方向。

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