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Multi-Spectroscopic Characterization of Human Serum Albumin Binding with Cyclobenzaprine Hydrochloride: Insights from Biophysical and In Silico Approaches

机译:人血清白蛋白与盐酸环苯扎林结合的多光谱表征:从生物物理和计算机方法的见解。

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摘要

Cyclobenzaprine hydrochloride (CBH) is a well-known muscle relaxant that is widely used to relieve muscle spasms and other pain associated with acute musculoskeletal conditions. In this study, we elucidated the binding characteristics of this muscle relaxant to human serum albumin (HSA). From a pharmaceutical and biochemical viewpoint, insight into the structure, functions, dynamics, and features of HSA-CBH complex holds great importance. The binding of CBH with this major circulatory transport protein was studied using a combination of biophysical approaches such as UV-VIS absorption, fluorescence quenching, and circular dichroism (CD) spectroscopy. Various in silico techniques, molecular docking and molecular dynamics, were also used to gain deeper insight into the binding. A reduction in the fluorescence intensities of HSA-CBH complex with a constant increase in temperature, revealed the static mode of protein fluorescence quenching upon CBH addition, which confirmed the formation of the HSA-CBH ground state complex. The alteration in the UV-VIS and far-UV CD spectrum indicated changes in both secondary and tertiary structures of HSA upon binding of CBH, further proving CBH binding to HSA. The analysis of thermodynamic parameters ∆H° and ∆S° showed that binding of CBH to HSA was dominated by intermolecular hydrophobic forces. The results of the molecular docking and molecular dynamics simulation studies also confirmed the stability of the complex and supported the experimental results.
机译:盐酸环苯扎林(CBH)是一种众所周知的肌肉松弛剂,被广泛用于缓解肌肉痉挛和其他与急性肌肉骨骼疾病相关的疼痛。在这项研究中,我们阐明了这种肌肉松弛剂与人血清白蛋白(HSA)的结合特征。从药物和生化的角度来看,深入了解HSA-CBH复合物的结构,功能,动力学和特征非常重要。使用生物物理方法(例如UV-VIS吸收,荧光猝灭和圆二色性(CD)光谱)的组合研究了CBH与这种主要的循环转运蛋白的结合。还使用了各种计算机技术,分子对接和分子动力学,以更深入地了解结合。随着温度的不断升高,HSA-CBH复合物的荧光强度降低,表明添加CBH后蛋白质荧光猝灭的静态模式,这证实了HSA-CBH基态复合物的形成。 UV-VIS和远紫外线CD光谱的变化表明,结合CBH后,HSA的二级和三级结构均发生了变化,进一步证明了CBH与HSA的结合。热力学参数ΔH°和∆S°的分析表明,CBH与HSA的结合主要受分子间疏水力的影响。分子对接和分子动力学模拟研究的结果也证实了配合物的稳定性,并支持了实验结果。

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