Central Research Laboratories, Kissei Pharmaceutical Co., Ltd, Azumino, Nagano, Japan.
Xenobiotica. 2024 Feb;54(2):45-56. doi: 10.1080/00498254.2024.2308818. Epub 2024 Feb 1.
In the early stages of drug discovery, adequate evaluation of the potential drug-drug interactions (DDIs) of drug candidates is important. Several CYP3A activators are known to lead to underestimation of DDIs. These compounds affect midazolam 1'-hydroxylation but not midazolam 4-hydroxylation.We used both metabolic reactions of midazolam to evaluate the activation and inhibition of CYP3A activators simultaneously. For our CYP inhibition assay using cocktail probe substrates, simultaneous liquid chromatography-tandem mass spectrometry monitoring of 1'-hydroxymidazolam and 4-hydroxymidazolam for CYP3A was established in addition to monitoring of 4-hydroxydiclofenac and 1'-hydroxybufuralol for CYP2C9 and CYP2D6.The results of our cocktail inhibition assay were well correlated with those of a single inhibition assay, as were the estimated inhibition parameters for typical CYP3A inhibitors. In our assay, a proprietary compound that activated midazolam 1'-hydroxylation and tended to inhibit 4-hydroxylation was evaluated along with known CYP3A activators. All compounds were well characterised by comparison of the results of midazolam 1'- and 4-hydroxylation.In conclusion, our CYP cocktail inhibition assay can detect CYP3A activation and assess the direct and time-dependent inhibition potentials for CYP3A, CYP2C9, and CYP2D6. This method is expected to be very efficient in the early stages of drug discovery.
在药物发现的早期阶段,充分评估候选药物的潜在药物-药物相互作用(DDI)非常重要。已知几种 CYP3A 激活剂会导致 DDI 的低估。这些化合物影响咪达唑仑 1'-羟化但不影响咪达唑仑 4-羟化。我们使用咪达唑仑的两种代谢反应来同时评估 CYP3A 激活剂的激活和抑制作用。对于我们使用鸡尾酒探针底物的 CYP 抑制测定,除了监测 CYP2C9 和 CYP2D6 的 4-羟基双氯芬酸和 1'-羟基布他洛尔外,还建立了同时液相色谱-串联质谱监测 CYP3A 的 1'-羟咪达唑仑和 4-羟咪达唑仑的方法。我们的鸡尾酒抑制测定的结果与单一抑制测定的结果以及典型 CYP3A 抑制剂的估计抑制参数非常相关。在我们的测定中,评估了一种既能激活咪达唑仑 1'-羟化又能抑制 4-羟化的专有化合物,以及已知的 CYP3A 激活剂。通过比较咪达唑仑 1'-和 4-羟化的结果对所有化合物进行了很好的特征描述。总之,我们的 CYP 鸡尾酒抑制测定可以检测 CYP3A 激活,并评估 CYP3A、CYP2C9 和 CYP2D6 的直接和时间依赖性抑制潜力。这种方法在药物发现的早期阶段预计非常有效。