抗疟天然产物。

Q1 Medicine
David G I Kingston, Maria Belen Cassera
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引用次数: 2

摘要

天然产物对人类健康作出了至关重要和独特的贡献,在防治疟疾方面尤其如此,其中天然产物奎宁和青蒿素及其衍生物和类似物挽救了数百万人的生命。由于最危险的疟疾寄生虫恶性疟原虫已经对奎宁及其大多数衍生物产生耐药性,并且正在对青蒿素及其衍生物产生耐药性,因此仍然迫切需要新的药物来治疗疟疾。本卷以疟疾的简短历史开始,随后是其生物学的总结。然后追溯发现用于治疗疟疾的奎宁的迷人历史,然后描述奎宁的生物合成、作用机制和临床应用,最后讨论基于奎宁结构的合成抗疟疾药物。然后,本卷介绍了青蒿素的发现及其作为当前最有效抗疟药物来源的发展,包括其合成和生物合成、作用机制以及临床使用和耐药性的摘要。通过对其他临床使用的抗疟天然产物的简短讨论,可以对其他具有显著抗疟原虫活性的天然产物进行详细的治疗,并按化合物类型分类。尽管从《自然》的组合文库中寻找新的抗疟天然产物具有挑战性,但很有可能产生新的抗疟药物。因此,本章最后确定了十多种具有开发潜力的天然产物作为临床抗疟药。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antimalarial Natural Products.

Natural products have made a crucial and unique contribution to human health, and this is especially true in the case of malaria, where the natural products quinine and artemisinin and their derivatives and analogues, have saved millions of lives. The need for new drugs to treat malaria is still urgent, since the most dangerous malaria parasite, Plasmodium falciparum, has become resistant to quinine and most of its derivatives and is becoming resistant to artemisinin and its derivatives. This volume begins with a short history of malaria and follows this with a summary of its biology. It then traces the fascinating history of the discovery of quinine for malaria treatment and then describes quinine's biosynthesis, its mechanism of action, and its clinical use, concluding with a discussion of synthetic antimalarial agents based on quinine's structure. The volume then covers the discovery of artemisinin and its development as the source of the most effective current antimalarial drug, including summaries of its synthesis and biosynthesis, its mechanism of action, and its clinical use and resistance. A short discussion of other clinically used antimalarial natural products leads to a detailed treatment of other natural products with significant antiplasmodial activity, classified by compound type. Although the search for new antimalarial natural products from Nature's combinatorial library is challenging, it is very likely to yield new antimalarial drugs. The chapter thus ends by identifying over ten natural products with development potential as clinical antimalarial agents.

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CiteScore
4.40
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