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首页> 外文期刊>Therapeutic Drug Monitoring >Molecular similarity methods for predicting cross-reactivity with therapeutic drug monitoring immunoassays.
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Molecular similarity methods for predicting cross-reactivity with therapeutic drug monitoring immunoassays.

机译:分子相似性方法可预测与治疗性药物监测免疫分析的交叉反应性。

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摘要

Immunoassays are used for therapeutic drug monitoring (TDM), yet may suffer from cross-reacting compounds able to bind the assay antibodies in a manner similar to the target molecule. To our knowledge, there has been no investigation using computational tools to predict cross-reactivity with TDM immunoassays. The authors used molecular similarity methods to enable calculation of structural similarity for a wide range of compounds (prescription and over-the-counter medications, illicit drugs, and clinically significant metabolites) to the target molecules of TDM immunoassays. Utilizing different molecular descriptors (MDL public keys, functional class fingerprints, and pharmacophore fingerprints) and the Tanimoto similarity coefficient, the authors compared cross-reactivity data in the package inserts of immunoassays marketed for in vitro diagnostic use. Using MDL public keys and the Tanimoto similarity coefficient showed a strong and statistically significant separation between cross-reactive and non-cross-reactive compounds. Thus, 2-dimensional shape similarity of cross-reacting molecules and the target molecules of TDM immunoassays provides a fast chemoinformatics methods for a priori prediction of potential of cross-reactivity that might be otherwise undetected. These methods could be used to reliably focus cross-reactivity testing on compounds with high similarity to the target molecule and limit testing of compounds with low similarity and ultimately with a very low probability of cross-reacting with the assay in vitro.
机译:免疫测定法用于治疗药物监测(TDM),但可能会遇到能够以类似于靶分子的方式结合测定抗体的交叉反应化合物。据我们所知,还没有使用计算工具预测与TDM免疫测定的交叉反应的研究。作者使用分子相似性方法来计算与TDM免疫测定目标分子的各种化合物(处方药和非处方药,非法药物和临床上重要的代谢物)的结构相似性。利用不同的分子描述符(MDL公钥,功能类别指纹和药效团指纹)和Tanimoto相似系数,作者比较了市售用于体外诊断的免疫测定包装插页中的交叉反应性数据。使用MDL公钥和Tanimoto相似系数表明,交叉反应和非交叉反应的化合物之间存在很强的统计学差异。因此,交叉反应分子和TDM免疫测定的目标分子的二维形状相似性为交叉反应潜力的先验预测提供了一种快速的化学信息学方法,否则该方法可能无法检测到。这些方法可用于将交叉反应性测试可靠地集中在与目标分子具有高度相似性的化合物上,并限制具有低相似性并且最终具有极低的与体外分析发生交叉反应的可能性的化合物。

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