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首页> 外文期刊>International Journal of Pharmaceutics >A rapid screening system to determine drug affinities for the intestinal dipeptide transporter 2: affinities of ACE inhibitors.
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A rapid screening system to determine drug affinities for the intestinal dipeptide transporter 2: affinities of ACE inhibitors.

机译:一种快速筛选系统,用于确定肠二肽转运蛋白的药物亲和力2:ACE抑制剂的亲和力。

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PURPOSE: To assess the affinities of a series of ACE inhibitors for the di/tri/oligopeptide transport system (DTS) using a rapid in vitro system. METHODS: Monolayers of Caco-2 cells were cultured in plastic wells for 7-9 days and the uptake of Gly-[3H]L-Pro was used as an affinity probe. Gly-[3H]L-Pro (50 nM), together with excess L-Pro (10 mM), to suppress uptake of any [3H]L-Pro produced by degradation of the probe, was incubated with the test compound (usually 1 mM) at pH 6 for 3-mins. The uptake of radiolabel was determined by liquid scintillation counting. RESULTS: A 2-dimensional six-domain model of the transporter based on the structure of a phosphinate ACE inhibitor (SQ-29852) was constructed to facilitate interpretation of the competitor affinities. The SQ-29852 molecule was divided into six binding domains (A-F) based on functional groups within these regions and the effects of structural variation in four of these domains (A, C-E) were explored. A series of dipeptide-like compounds varying within specific domains were selected from a large number of commercially available ACE inhibitors and SQ-29852 analogues. Domain A had a preference for an uncharged group, with bulky hydrophobic groups reducing affinity. Domain C exhibited a preference for a positive charge over a neutral function, with the space this functional group occupies contributing to affinity. Domain D favoured lipophilic residues and domain E retained activity when the carboxylic acid was esterified. CONCLUSION: The test system is able to reveal structure-activity relationships of peptidomimetic agents and may well serve as a design tool to optimise affinity for the DTS.
机译:目的:使用快速体外系统评估一系列ACE抑制剂对di / tri /寡肽转运系统(DTS)的亲和力。方法:将单层Caco-2细胞在塑料孔中培养7-9天,并利用Gly- [3H] L-Pro的吸收作为亲和探针。将Gly- [3H] L-Pro(50 nM)与过量的L-Pro(10 mM)一起抑制探针降解产生的任何[3H] L-Pro的摄取,然后与受试化合物一起孵育(通常1 mM)在pH 6下持续3分钟。通过液体闪烁计数确定放射性标记的摄取。结果:基于次膦酸盐ACE抑制剂(SQ-29852)的结构,构建了转运蛋白的二维六域模型,以帮助解释竞争者的亲和力。基于这些区域内的官能团,将SQ-29852分子分为六个结合结构域(A-F),并研究了其中四个结构域(A,C-E)的结构变异效应。从大量可商购的ACE抑制剂和SQ-29852类似物中选择一系列在特定域内变化的二肽样化合物。结构域A优先选择不带电荷的基团,而庞大的疏水基团会降低亲和力。域C在中性功能方面表现出对正电荷的偏爱,该官能团占据的空间有助于亲和力。当羧酸被酯化时,结构域D有利于亲脂性残基,并且结构域E保留活性。结论:该测试系统能够揭示拟肽药物的构效关系,并且可以很好地用作优化与DTS亲和力的设计工具。

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