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首页> 外文期刊>Biologicals: Journal of the International Association of Biological Standardization >Comparative studies on drug binding to the purified and pharmaceutical-grade human serum albumins: Bridging between basic research and clinical applications of albumin
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Comparative studies on drug binding to the purified and pharmaceutical-grade human serum albumins: Bridging between basic research and clinical applications of albumin

机译:药物与纯化的和药用级人血清白蛋白结合的比较研究:白蛋白的基础研究与临床应用之间的桥梁

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摘要

Human serum albumin (HSA), the most abundant protein in blood plasma, is a monomeric multidomain protein that possesses an extraordinary capacity for binding, so that serves as a circulating depot for endogenous and exogenous compounds. During the heat sterilization process, the structure of pharmaceutical-grade HSA may change and some of its activities may be lost. In this study, to provide deeper insight on this issue, we investigated drug-binding and some physicochemical properties of purified albumin (PA) and pharmaceutical-grade albumin (PGA) using two known drugs (indomethacin and ibuprofen). PGA displayed significantly lower drug binding capacity compared to PA. Analysis of the quenching and thermodynamic parameters indicated that intermolecular interactions between the drugs and the proteins are different from each other. Surface hydrophobicity as well as the stability of PGA decreased compared to PA, also surface hydrophobicity of PA and PGA increased upon drugs binding. Also, kinetic analysis of pseudo-esterase activities indicated that K-m and V-max parameters for PGA enzymatic activity are more and less than those of PA, respectively. This in vitro study demonstrates that the specific drug binding of PGA is significantly reduced. Such studies can act as connecting bridge between basic research discoveries and clinical applications. (C) 2015 The International Alliance for Biological Standardization. Published by Elsevier Ltd. All rights reserved.
机译:人血浆白蛋白(HSA)是血浆中最丰富的蛋白质,是一种单体多结构域蛋白,具有非凡的结合能力,因此可以作为内源性和外源性化合物的循环库。在加热灭菌过程中,药物级HSA的结构可能会发生变化,并且其某些活性可能会丢失。在这项研究中,为了提供对此问题的更深入的了解,我们使用两种已知的药物(吲哚美辛和布洛芬)研究了纯化白蛋白(PA)和药用级白蛋白(PGA)的药物结合和一些理化性质。与PA相比,PGA显示出明显更低的药物结合能力。对淬灭和热力学参数的分析表明,药物与蛋白质之间的分子间相互作用互不相同。与PA相比,其表面疏水性以及PGA的稳定性均降低了,并且在药物结合后,PA和PGA的表面疏水性也有所提高。而且,对伪酯酶活性的动力学分析表明,PGA酶促活性的K-m和V-max参数分别比PA的参数大或小。这项体外研究表明,PGA的特异性药物结合显着降低。这些研究可以充当基础研究发现与临床应用之间的连接桥梁。 (C)2015年国际生物标准化联盟。由Elsevier Ltd.出版。保留所有权利。

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