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首页> 外文期刊>Journal of pharmaceutical sciences. >Fast gradient HPLC method to determine compounds binding to human serum albumin. Relationships with octanol/water and immobilized artificial membrane lipophilicity.
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Fast gradient HPLC method to determine compounds binding to human serum albumin. Relationships with octanol/water and immobilized artificial membrane lipophilicity.

机译:快速梯度HPLC法测定与人血清白蛋白结合的化合物。与辛醇/水和固定化人工膜亲脂性的关系。

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A fast gradient HPLC method (cycle time 15 min) has been developed to determine Human Serum Albumin (HSA) binding of discovery compounds using chemically bonded protein stationary phases. The HSA binding values were derived from the gradient retention times that were converted to the logarithm of the equilibrium constants (logK HSA) using data from a calibration set of molecules. The method has been validated using literature plasma protein binding data of 68 known drug molecules. The method is fully automated, and has been used for lead optimization in more than 20 company projects. The HSA binding data obtained for more than 4000 compounds were suitable to set up global and project specific quantitative structure binding relationships that helped compound design in early drug discovery. The obtained HSA binding of known drug molecules were compared to the Immobilizd Artificial Membrane binding data (CHI IAM) obtained by our previously described HPLC-based method. The solvation equation approach has been used to characterize the normal binding ability of HSA, and this relationship shows that compound lipophilicity is a significant factor. It was found that the selectivity of the "baseline" lipophilicity governing HSA binding, membrane interaction, and octanol/water partition are very similar. However, the effect of the presence of positive or negative charges have very different effects. It was found that negatively charged compounds bind more strongly to HSA than it would be expected from the lipophilicity of the ionized species at pH 7.4. Several compounds showed stronger HSA binding than can be expected from their lipophilicity alone, and comparison between predicted and experimental binding affinity allows the identification of compounds that have good complementarities with any of the known binding sites.
机译:已开发出一种快速梯度HPLC方法(循环时间15分钟),以确定使用化学键合蛋白质固定相的发现化合物的人血清白蛋白(HSA)结合。 HSA结合值是从梯度保留时间得出的,该时间使用来自分子校准集的数据转换为平衡常数的对数(logK HSA)。该方法已经使用68种已知药物分子的血浆蛋白结合数据进行了验证。该方法是完全自动化的,已用于20多个公司项目中的线索优化。从4000多种化合物获得的HSA结合数据适用于建立全局和项目特定的定量结构结合关系,这些关系有助于化合物在早期药物开发中的设计。将获得的已知药物分子的HSA结合与通过我们先前描述的基于HPLC的方法获得的固定化人工膜结合数据(CHI IAM)进行比较。已使用溶剂化方程方法表征HSA的正常结合能力,这种关系表明化合物的亲脂性是一个重要因素。发现控制HSA结合,膜相互作用和辛醇/水分配的“基线”亲脂性的选择性非常相似。但是,存在正电荷或负电荷的效果有很大不同。已经发现,带负电荷的化合物与HSA的结合力比在pH 7.4时离子化物质的亲脂性所预期的强。几种化合物显示出比仅凭其亲脂性所预期的更强的HSA结合力,并且通过对预测结合亲和力和实验结合亲和力的比较,可以鉴定与任何已知结合位点具有良好互补性的化合物。

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