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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Platinum metallodrug-protein binding studies by capillary electrophoresis-inductively coupled plasma-mass spectrometry: Characterization of interactions between Pt(II) complexes and human serum albumin
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Platinum metallodrug-protein binding studies by capillary electrophoresis-inductively coupled plasma-mass spectrometry: Characterization of interactions between Pt(II) complexes and human serum albumin

机译:铂金属药物-蛋白质结合的毛细管电泳-电感耦合等离子体质谱法研究:Pt(II)配合物与人血清白蛋白相互作用的表征

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摘要

Characterizing how platinum metallocomplexes bind to human serum albumin (HSA) is essential in evaluating anticancer drug candidates. Using cisplatin as a reference complex, the application of capillary electrophoresis (CE) to reliably assess drug/HSA interactions was validated. Since this complex is small compared to the size of the protein, the binding response could only be recognized when applying CE coupled to a (platinum) metal-specific mode of detection, namely inductively coupled plasma-mass spectrometry (ICP-MS). This coupling allowed for confirmation of a specific affinity of cisplatin and novel Pt complexes to HSA, measurement of the kinetics of binding reactions, and determination of the number of drug molecules attached to the protein. As the cisplatin/HSA molar ratio increased, the reaction rate became faster with a maximum on the kinetic curve appearing at about 50 h of incubation at 20 times excess of cisplatin. The reaction was characterized as a pseudo-first order reaction with the rate constant k = 0.003 min(-1) at 37 degreesC. When incubated with a 20-fold excess of cisplatin, HSA bound up to 10 mol of Pt per mol of the protein. This is indicative for a strong metal-protein coordination occurring at several HSA sites other than the only protein cysteine residue. Structural analogs of cisplatin, bearing aminoalcohol ligands, showed comparable protein binding reactivity and stoichiometry but a common equilibrium was not reached even after one week of incubation. Also apparent was a two-step mechanism of the binding reaction. Results demonstrated the suitability of CE-ICP-MS as a rapid assay for high-throughput studying of drug/HSA interactions.
机译:表征铂金属络合物如何与人血清白蛋白(HSA)结合对于评估抗癌候选药物至关重要。使用顺铂作为参考复合物,验证了毛细管电泳(CE)在可靠地评估药物/ HSA相互作用中的应用。由于与蛋白质的大小相比,该复合物很小,因此仅在将CE偶联至(铂)金属特异性检测模式即电感耦合等离子体质谱(ICP-MS)时才能识别结合反应。这种偶联可以确认顺铂和新型Pt复合物对HSA的特异性亲和力,结合反应动力学的测定以及与该蛋白质连接的药物分子的数量的确定。随着顺铂/ HSA摩尔比的增加,反应速率变得更快,动力学曲线上的最大值出现在孵育约50小时,过量顺铂20倍的情况下。该反应被表征为在37摄氏度的速率常数k = 0.003 min(-1)的拟一级反应。当与20倍过量的顺铂一起孵育时,HSA每摩尔蛋白质最多结合10摩尔Pt。这表明在除了唯一的蛋白质半胱氨酸残基之外的几个HSA位点处发生强的金属-蛋白质配位。带有氨基醇配体的顺铂的结构类似物显示出可比的蛋白质结合反应性和化学计量,但即使在温育一周后仍未达到共同的平衡。结合反应的两步机理也很明显。结果表明,CE-ICP-MS可作为一种快速检测药物/ HSA相互作用的高通量研究方法。

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