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疟疾管理面临的挑战及纳米技术应用的展望

Challenges in Malaria Management and a Glimpse at Some Nanotechnological Approaches.

机构信息

Department of Chemistry, University of Basel, 4056, Basel, Switzerland.

Swiss Tropical and Public Health Institute, University of Basel, 4002, Basel, Switzerland.

出版信息

Adv Exp Med Biol. 2018;1052:103-112. doi: 10.1007/978-981-10-7572-8_9.

Abstract

Malaria is a devastating infectious disease transmitted by mosquitoes, affecting millions of people and killing about half a million children each year. Despite tremendous progress in the control and elimination of malaria within the past years, there are still considerable challenges to be solved. To name a few, drug-resistant parasites, insecticide-resistant mosquitoes and the difficulty to formulate a potent malaria vaccine need to be addressed with new strategies to achieve the final goal of malaria eradication. Nanotechnology-researching and designing innovative structures at the nanoscale-is a promising contemporary technology that is being applied to a vast number of biomedical problems. In the case of malaria, nanotechnology provides tools to design strategies to target drug molecules to specific stages of the parasite, treat drug-resistant parasites, resolve severe malaria, increase vaccine efficacies and combinations thereof. This chapter introduces malaria, discusses current challenges of malaria control and relates these challenges to some potential solutions provided by the nanotechnology field.

摘要

疟疾是一种由蚊子传播的毁灭性传染病,每年影响数百万人,并导致约 50 万名儿童死亡。尽管在过去几年中在疟疾的控制和消除方面取得了巨大进展,但仍有许多挑战需要解决。例如,需要用新的策略来解决抗药性寄生虫、抗杀虫剂的蚊子以及难以制定有效疟疾疫苗等问题,以实现最终消除疟疾的目标。纳米技术——研究和设计纳米尺度的创新结构——是一种很有前途的现代技术,它被应用于大量的生物医学问题。在疟疾的情况下,纳米技术提供了工具来设计策略,将药物分子靶向寄生虫的特定阶段,治疗抗药性寄生虫,解决严重疟疾,提高疫苗效果,以及它们的组合。本章介绍了疟疾,讨论了疟疾控制的当前挑战,并将这些挑战与纳米技术领域提供的一些潜在解决方案联系起来。

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