丙诺洛芬与人血清白蛋白相互作用的研究:对映体和代谢物的结合特性。

T Nomura, K Sakamoto, T Imai, M Otagiri
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引用次数: 6

摘要

采用平衡透析和光谱技术研究了丙洛芬、丙洛芬葡萄糖醛酸酯和甲基丙洛芬与人血清白蛋白(HSA)的相互作用。与母体化合物丙洛芬相比,丙洛芬葡萄糖醛酸酯和甲基丙洛芬酯对HSA的结合亲和力几乎相同。普萘洛芬和甲基普萘洛芬对HSA具有立体选择性亲和。利用荧光探针进行竞争位移实验发现,丙洛芬的特异性结合位点为地西泮位点II,丙洛芬葡萄糖醛酸酯和丙洛芬甲基酯的特异性结合位点为华法林位点I。此外,从与改性HSA的结合数据来看,酪氨酸-411似乎特异性参与了pranoprofen的结合。随着pranoprofen和pranoprofen methyllester与HSA或洗涤剂结合的吸收光谱变化表明,pranoprofen的HSA结合位点是由白蛋白分子表面的阳离子位点组成的,该阳离子位点具有容纳芳香环的疏水区域,而pranoprofen methyllester的结合位点似乎占据了广阔的疏水区域。这些有限的数据表明,普拉洛芬及其葡糖苷在HSA分子上的结合位点的位置和微环境存在差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of interaction of pranoprofen with human serum albumin: binding properties of enantiomers and metabolite.

The interaction of pranoprofen, pranoprofen glucuronide and pranoprofen methylester with human serum albumin (HSA), was investigated by equilibrium dialysis and spectroscopic techniques. The binding affinities of pranoprofen glucuronide and pranoprofen methylester to HSA were found to be almost the same, although they were remarkably small as compared to that of the parent compound, pranoprofen. Pranoprofen and pranoprofen methylester showed stereoselective affinities to HSA. It was found from the competitive displacement experiments using the fluorescent probes that the specific binding site for pranoprofen was site II, the diazepam site, and that the binding sites of pranoprofen glucuronide and pranoprofen methylester were site I, the warfarin site. In addition, from the binding data with modified HSA, it seemed that tyrosine-411 was specifically involved in the pranoprofen binding. The absorption spectral changes which accompanied the binding of pranoprofen and pranoprofen methylester to HSA or detergents implied that the HSA binding site of pranoprofen consisted of a cationic site on the surface of the albumin molecule with a hydrophobic region to accommodate the aromatic ring and that the binding site for pranoprofen methylester seemed to occupy a wide hydrophobic area. These limited data indicated differences in the location and microenvironments of binding sites for pranoprofen and its glucuronide on the HSA molecule.

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