Hollósy Ferenc, Valkó Klara, Hersey Anne, Nunhuck Shenaz, Kéri György, Bevan Chris
Computational, Analytical and Structural Sciences, GlaxoSmithKline, Gunnels Wood Road, Stevenage, Hertfordshire, SG1 2NY United Kingdom.
J Med Chem. 2006 Nov 30;49(24):6958-71. doi: 10.1021/jm050957i.
The volume of distribution (VD) in humans of 179 known drug molecules (acids, bases, and neutrals) has been modeled using two biomimetic-binding measurements. The phospholipid binding (log K (IAM)) and the plasma protein binding (log K (HSA)) have been calculated from gradient HPLC retention times on immobilized artificial membrane (IAM) and on human serum albumin (HSA) columns, respectively. The log VD values showed good correlation with the compounds' relative binding to IAM and HSA as follows: log VD=0.44 log K (IAM)-0.22 log K (HSA)-0.66; n=179, r2=0.76, s=0.33, and F=272. It was also observed that positively charged molecules bind relatively more to IAM, while negatively charged ones bind more to HSA, in line with the empirical observation that bases tend to have a larger volume of distribution than acids. These results suggest that with the help of these two simple high throughput HPLC-based biomimetic binding measurements an important in vivo drug disposition property can be estimated for use in early drug discovery.
利用两种仿生结合测量方法对179种已知药物分子(酸、碱和中性分子)在人体内的分布容积(VD)进行了建模。分别根据固定化人工膜(IAM)柱和人血清白蛋白(HSA)柱上的梯度高效液相色谱保留时间计算出磷脂结合(log K(IAM))和血浆蛋白结合(log K(HSA))。log VD值与化合物与IAM和HSA的相对结合呈现出良好的相关性,具体如下:log VD = 0.44 log K(IAM)- 0.22 log K(HSA)- 0.66;n = 179,r2 = 0.76,s = 0.33,F = 272。还观察到带正电荷的分子与IAM的结合相对较多,而带负电荷的分子与HSA的结合较多,这与碱的分布容积往往比酸大的经验观察结果一致。这些结果表明,借助这两种基于高效液相色谱的简单高通量仿生结合测量方法,可以估算出一种重要的体内药物处置特性,用于早期药物发现。