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The antimalarial pipeline

机译:抗疟管道

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摘要

Over the past decade, new high-throughput phenotypic assays with malaria parasites have been developed, and these were used to screen millions of compounds. This effort, as well as improving older chemical scaffolds and optimising compounds against both known and new drug targets has resulted in the discovery of exciting new pipeline drug candidates that are now being evaluated in a number of clinical trials. In addition, the pitfalls and opportunities from this experience has led to a better definition of the optimal target compound and product profiles for new antimalarials, including medicines that treat uncomplicated or severe malaria, provide chemoprevention, or stop disease transmission, covering all stages of the parasite. An important decision element is how to combine these new molecules with existing ones in today’s dynamic resistance landscape.
机译:在过去的十年中,已经开发出具有疟疾寄生虫的新的高通量表型测定,并且这些测量方法用于筛选数百万化合物。 这种努力以及改善较老的化学支架和优化针对已知和新药物靶标的化合物导致了发现现在正在评估许多临床试验的新型管道药物候选者。 此外,这种经验的陷阱和机会导致了最佳目标化合物和新的抗疟药产品曲线的定义,包括治疗简单或严重疟疾的药物,提供化学预防或停止疾病传播,涵盖所有阶段 寄生虫。 一个重要的决策元素是如何将这些新分子与现有的动态电阻景观中的现有分子结合起来。

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