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Drug-lipid interaction evaluation: why a 19th century solution?

机译:药物-脂质相互作用评估:为什么选择19世纪的解决方案?

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The affinity of a drug candidate for a biological membrane (its lipophilicity) is closely related to the pharmacologically crucial events of absorption, biodistribution, metabolization and excretion. The evolution of knowledge of biological membranes during the past two decades contrasts with the rudimentary parameter most commonly used to assess lipophilicity: P(o/w), the octanol-water partition coefficient. P(o/w) is especially unrealistic when testing molecules that are polar or partially charged. By contrast, lipid vesicle-based methods determine the extent of the actual partition of a drug to a membrane much more accurately, and have the additional advantage of enabling the choice of the lipid composition considered most suitable to answer a specific biological or pharmaceutical question. In addition, some of these methods are appropriate for high throughput screening, thus shifting determinations of membrane partition to a more preliminary stage of drug development. This streamlines research and development, by saving the time and money that would be spent on unpromising leads.
机译:候选药物对生物膜的亲和力(亲脂性)与吸收,生物分布,代谢和排泄的药理学关键事件密切相关。在过去的二十年中,生物膜知识的发展与最常用于评估亲脂性的基本参数相反:P(o / w),辛醇-水分配系数。当测试极性或部分带电的分子时,P(o / w)特别不现实。相比之下,基于脂质囊泡的方法可以更准确地确定药物在膜上的实际分配程度,并且具有可以选择最适合回答特定生物学或药物问题的脂质组合物的额外优势。此外,这些方法中的某些方法适用于高通量筛选,因此将膜分区的确定转移到了药物开发的更初步阶段。通过节省在没有希望的销售线索上花费的时间和金钱,这可以简化研发工作。

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