Rutledge D R, Chong M T, Nelson M V
Cardiovascular Research Laboratory, College of Pharmacy, Detroit, Michigan 48202.
Eur J Clin Pharmacol. 1991;40(6):603-7. doi: 10.1007/BF00279978.
There is little information about the factors which influence drug protein binding between species. We have therefore investigated the role of pH on the binding of gallopamil, a calcium channel antagonist known to exhibit pH-sensitive binding, among four species, human, baboon, bovine, and canine. We used pure protein solutions of alpha 1 acid glycoprotein (AAG) (60 mg.l-1), albumin (45 gm.l-1), and their combination and three values of pH, 7.0, 7.4, and 8.0. Gallopamil protein binding was determined over a concentration range of 2.0 x 10(-7) mol.l-1 to 2.1 x 10(-3) mol.l-1 using equilibrium dialysis. Gallopamil binding in all solutions was best described using a two binding site model in the combination solution and a one binding site model in the pure solutions. pH did not affect the number of identical binding sites. However, the influence of pH on gallopamil binding was species specific. Increasing the pH from 7.0 to 8.0 influenced binding affinity differently between species. There were directionally similar changes in unbound fraction at a gallopamil concentration of 2 x 10(-7) mol.l-1 as pH increased, although there were species differences in the degree of change. In protein solutions containing both AAG and albumin a reduction in pH from 7.4 to 7.0 resulted in species-specific increases in the unbound fraction. Increasing the pH from 7.4 to 8.0 again resulted in species-specific reductions in the unbound fraction of gallopamil. Similar changes were seen when pure AAG or albumin solutions were used, indicating species variance in both gallopamil protein binding and the effect of pH on binding.
关于影响不同物种间药物蛋白结合的因素,目前所知甚少。因此,我们研究了pH值对加洛帕米(一种已知具有pH敏感结合特性的钙通道拮抗剂)在人、狒狒、牛和犬这四种物种中的结合作用。我们使用了α1酸性糖蛋白(AAG)(60mg.l-1)、白蛋白(45gm.l-1)的纯蛋白溶液及其组合,并设置了7.0、7.4和8.0三个pH值。使用平衡透析法在2.0×10(-7)mol.l-1至2.1×10(-3)mol.l-1的浓度范围内测定加洛帕米的蛋白结合情况。在组合溶液中,加洛帕米的结合情况用双结合位点模型能得到最佳描述,而在纯溶液中则用单结合位点模型。pH值不影响相同结合位点的数量。然而,pH值对加洛帕米结合的影响具有物种特异性。将pH值从7.0提高到8.0,不同物种间结合亲和力受到的影响不同。当加洛帕米浓度为2×10(-7)mol.l-1时,随着pH值升高,未结合部分的变化方向相似,尽管变化程度存在物种差异。在同时含有AAG和白蛋白的蛋白溶液中,pH值从7.4降至7.0会导致未结合部分出现物种特异性增加。将pH值从7.4提高到8.0,加洛帕米的未结合部分又会出现物种特异性降低。使用纯AAG或白蛋白溶液时也观察到了类似变化,表明加洛帕米蛋白结合以及pH值对结合的影响均存在物种差异。