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首页> 外文期刊>Journal of Molecular Liquids >Unveiling the molecular mechanism of pH-dependent interactions of human serum albumin with chemotherapeutic agent doxorubicin: A combined spectroscopic and constant-pH molecular dynamics study
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Unveiling the molecular mechanism of pH-dependent interactions of human serum albumin with chemotherapeutic agent doxorubicin: A combined spectroscopic and constant-pH molecular dynamics study

机译:用化学治疗剂DOXORUBIN揭示人血清白蛋白的pH依赖性相互作用的分子机制:一种综合光谱和恒定pH分子动力学研究

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Doxorubicin (DOX) is a potent and clinically approved chemotherapeutic agent for cancers. Although human serum albumin (HSA) has been frequently used as a promising drug vehicle for DOX to reduce its doses and toxicities, the pH-dependent binding mechanism of HSA with DOX is still poorly understood. This hampers the rational design of smart HSA-based cancer microenvironment-responsive DOX delivery systems for clinical applications. Here, the molecular interactions of DOX with HSA at various pH levels were systematically investigated using spectroscopic and in silico techniques. Our experiments showed that the binding of DOX to HSA was governed by static quenching mechanism and highly affected by environmental pH. The change of pH altered the conformational states of HSA, which may regulate the binding of DOX onto HSA. In agreement with experimental observations, 1000 ns-long constant-pH molecular dynamics simulations elucidated the structural basis of DOX bound to HSA at different pH. The computational results revealed that the favored binding of DOX at slight alkaline pH may be attributed to the intact structure of HSA and increased intermolecular hydrogen bonding. In contrast, at acidic conditions, the extension of HSA global conformation and drop of local structural identity reduced the number of intermolecular hydrogen bonds. Our study provided novel structural insights into the molecular mechanism of pH-dependent interactions of HSA with DOX, which may be helpful for the design of novel HSA-based microenvironment-responsive drug delivery systems for anticancer therapeutic applications. (C) 2021 Elsevier B.V. All rights reserved.
机译:阿霉素(DOX)是一种有效且经临床批准的癌症化疗药物。虽然人血清白蛋白(HSA)经常被用作DOX的一种有希望的药物载体,以减少其剂量和毒性,但对HSA与DOX的pH依赖性结合机制仍知之甚少。这阻碍了基于HSA的智能癌症微环境响应型DOX给药系统临床应用的合理设计。在这里,我们使用光谱技术和电子技术系统地研究了DOX与HSA在不同pH水平下的分子相互作用。我们的实验表明,DOX与HSA的结合受静态猝灭机制控制,并受到环境pH值的高度影响。pH值的变化改变了HSA的构象状态,这可能会调节DOX与HSA的结合。与实验观察结果一致,1000 ns长的恒定pH分子动力学模拟阐明了DOX在不同pH下与HSA结合的结构基础。计算结果表明,DOX在轻度碱性pH下的有利结合可能归因于HSA的完整结构和分子间氢键的增加。相反,在酸性条件下,HSA整体构象的延长和局部结构同一性的下降减少了分子间氢键的数量。我们的研究为HSA与DOX的pH依赖性相互作用的分子机制提供了新的结构见解,这可能有助于设计用于抗癌治疗的新型基于HSA的微环境响应性药物递送系统。(c)2021爱思唯尔B.V.保留所有权利。

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