D'Souza Malcolm J, Alabed Ghada J, Earley Melissa, Roberts Natalia, Gerges Fady J
Wesley College, USA.
Georgetown University, USA.
Am J Health Sci. 2013 Summer;4(3):137-150. doi: 10.19030/ajhs.v4i3.8010.
Chemical, pharmacokinetic, and pharmacodynamics properties are available in the package inserts of every Food and Drug Administration (FDA) approved prescription drug, including all available chemotherapy drugs. These inserts follow a specific format imposed by the FDA. Whether chemotherapy drugs are administered via the parenteral route or alimentary tract, a significant factor affecting their bioavailability, elimination and consequently the drug's effectiveness and potency, is its state of aqueous solubility. Water solubility has always lent itself poorly to the different predictive and experimental measures employed in the determination of a useful quantitative assessment. In this project, we first built a chemical structure based searchable database for 85 FDA approved chemotherapy drugs and then used Bio-Rad's KnowItAll Informatics suite to focus on the drugs pH-dependent water solubility prediction. We compared the predicted values for water solubility to the available values reported in the drug inserts, testing the practical utility and the predictive ability of our model in reporting such a clinically relevant, underreported pharmacokinetic parameter. A relational cancer drug database (MySQL) was created to further facilitate analysis and/or prediction of a chemotherapy compound's missing pharmacokinetic properties.
每种美国食品药品监督管理局(FDA)批准的处方药,包括所有可用的化疗药物,其化学、药代动力学和药效学特性都可在药品说明书中查到。这些说明书遵循FDA规定的特定格式。无论化疗药物是通过非肠道途径还是消化道给药,影响其生物利用度、消除,进而影响药物有效性和效力的一个重要因素是其水溶性状态。水溶性一直难以通过用于确定有用定量评估的不同预测和实验方法进行评估。在本项目中,我们首先为85种FDA批准的化疗药物建立了一个基于化学结构的可搜索数据库,然后使用伯乐公司的KnowItAll信息学套件专注于药物pH依赖性水溶性预测。我们将预测的水溶性值与药品说明书中报告的可用值进行比较,测试我们模型在报告这种临床相关但报道不足的药代动力学参数方面的实际效用和预测能力。创建了一个关系型癌症药物数据库(MySQL),以进一步促进对化疗化合物缺失药代动力学特性的分析和/或预测。