Physicochemical and spectroscopic analysis of interactions between aspirin and normal saline at different temperatures

Parveen Kumar , Inesh Kumar , Palak Ahir , Sunaina Sharma , Sunil Kumar
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Abstract

The primary goal of the current investigation is to explore the molecular interactions between aspirin (2-Acetoxybenzoic acid) and normal saline (0.9% w/v aqueous NaCl) at various concentrations (0.001–0.010) m and temperature (T= 300.15–315.15) K. To understand the various possible molecular interactions, volumetric, acoustic, conductometric and viscometric parameters were evaluated using experimental measured values of densities (ρ), ultrasonic velocities (u), specific conductance (κ), and viscosities (η). The results derived from these parameters have been examined in terms of drug–solvent and drug-drug interactions. The results of physicochemical studies indicate that aspirin exhibits strong interactional and structure–forming behaviour in normal saline. These results were well supported by UV-visible spectral studies which indicate the existence of intense aspirin–normal saline interactions in the form of modification in absorption maximum and absorption wavelength. The cyclic voltammetric studies were also performed to explore the oxidation/reduction behaviour and effect of aspirin on hemolysis. The experimental analysis of these studies provides valuable insights for better drug design, drug delivery, compatibility, potential safety, and biological relevance for the pharmaceutical and health industries.

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不同温度下阿司匹林与生理盐水相互作用的物理化学和光谱分析
本次研究的主要目的是探索阿司匹林(2-乙酰氧基苯甲酸)与生理盐水(0.9% w/v 氯化钠水溶液)在不同浓度(0.001-0.010)m 和温度(T= 300.15-315.15)K 下的分子相互作用。为了解各种可能的分子相互作用,利用密度 (ρ)、超声波速度 (u)、比传导率 (κ)和粘度 (η)的实验测量值对体积、声学、电导和粘度参数进行了评估。根据这些参数得出的结果对药物-溶剂和药物-药物之间的相互作用进行了研究。理化研究结果表明,阿司匹林在生理盐水中表现出强烈的相互作用和结构形成行为。这些结果得到了紫外-可见光谱研究的有力支持,研究表明阿司匹林与生理盐水之间存在着强烈的相互作用,表现为吸收最大值和吸收波长的改变。此外,还进行了循环伏安研究,以探讨阿司匹林的氧化/还原行为和对溶血的影响。这些研究的实验分析为更好的药物设计、药物输送、兼容性、潜在安全性以及制药和健康产业的生物相关性提供了宝贵的见解。
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