超声和电磁场联合应用研究地塞米松磷酸二钠分子间的键合机制

IF 1.3 Q3 INSTRUMENTS & INSTRUMENTATION
Constantine Kouderis, Angelos G. Kalampounias
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引用次数: 1

摘要

我们研究了氢化可的松(皮质醇)的衍生物地塞米松磷酸二钠水溶液的超声诱导双折射痕迹。研究了溶液浓度、超声频率和强度以及温度对稳态双折射、瞬态积累和衰减弛豫过程的影响。从系统的结构特性出发,对结果进行了分析,以进一步了解分子弛豫动力学和所提出的系统中发生的自结合过程。超声诱导的双折射弛豫是由地塞米松磷酸二钠聚集体的自结合引起的旋转扩散引起的,这取决于溶液浓度。所观察到的弛豫机制与声场诱导的自组装的水动力尺寸直接相关。系统地分析了超声场引起的瞬态双折射信号,使我们能够评估随浓度、温度和超声特性变化的永久偶极子和感应偶极子之间的相互作用。双折射轨迹与拉伸指数律充分拟合,表明自聚集分子结构的多色散性质。根据最近在该系统上进行的研究,描述了所获得的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combined Use of Ultrasonic and Electromagnetic Fields for the Study of Bonding Mechanisms between Dexamethasone Disodium Phosphate Molecules
We have investigated the ultrasonically induced birefringence traces of aqueous solutions of dexamethasone disodium phosphate, a derivative of hydrocortisone (cortisol). The stationary birefringence and the transient built-up and decay relaxation processes were studied as a function of solution concentration, ultrasound frequency and intensity, as well as a function of temperature. The results were analyzed in view of structural peculiarities of the system in an effort to gain further insights into the molecular relaxation dynamics and the proposed self-association process occurring in the system. The detected ultrasonically induced birefringence relaxation is motivated by the rotational diffusion of dexamethasone disodium phosphate aggregates due to self-association depending on the solution concentration. The observed relaxation mechanism is directly linked to the hydrodynamic size of the acoustic field-induced self-assembly. The systematic analysis of the transient birefringence signals caused by the applied ultrasonic field allowed us to evaluate the interplay between permanent and induced dipoles with changing concentration, temperature, and ultrasound properties. The birefringence traces are adequately fitted with a stretched exponential law indicating the polydispersive nature of the self-aggregated molecular structures. The obtained results are described in the light of recent studies performed on this system.
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来源期刊
CiteScore
2.80
自引率
28.60%
发文量
27
审稿时长
11 weeks
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