Molecular Spectroscopic (FTIR and UV-Vis) Analysis and In Vitro Antibacterial Investigation of a Deep Eutectic Solvent of N,N-Dimethyl Urea-Citric Acid

Q2 Pharmacology, Toxicology and Pharmaceutics Science and Technology Indonesia Pub Date : 2024-01-22 DOI:10.26554/sti.2024.9.1.167-172
S. Yudha S., Eka Angasa, Muhamad Alvin Reagen, Mohsin Kazi
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Abstract

The intriguing pursuit of environmentally friendly solvents with tailored properties for diverse applications is a focal point of numerous studies, encompassing precursor selection, thorough characterization, and the exploration of potential applications. The study aims to assess the physicochemical properties and antimicrobial activity of deep eutectic solvents (DES) produced from N,N-dimethyl urea (DMU) and citric acid (CA), highlighting differences from their individual precursors. Various mass ratio variations of (DMU, solid) and (CA, solid) (DMU:CA = 1.0:1.0; 1.0:1.5; 1.0:2.0; 2.0: 1.0; 1.5:1.0) have been tested to make DES solvents through the melt process. Both types of blends generally melt at a temperature of 80°C. The overall liquid resulting from the melting of solids was generally clear in color. Molecular analysis using an infrared spectrophotometer showed some insignificant shifts from one product to another, compared with DMU and CA as precursors. Likewise, analysis using a UV–Vis spectrophotometer, when the entire sample was dissolved in demineralized water (2 mg/mL), showed no difference in the spectrum. In addition, functional group analysis using a spectrophotometer showed some minor changes, mainly shifts in peaks due to changes in the DMU:CA ratio. This may be due to the interaction of the hydrogen donor and the hydrogen acceptor in DES. All samples showed absorption peaks in the ultraviolet region of 202-210 nm. The resulting DES application showed growth inhibitory activity for Staphylococcus aureus and Escherichia coli bacteria in all products produced. The same analysis of the two types of precursors used showed that only CA had activity, but DMU did not have similar activity.
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N,N-二甲基尿素-柠檬酸深度共晶溶剂的分子光谱(傅立叶变换红外光谱和紫外可见光谱)分析和体外抗菌研究
为不同应用领域量身定制具有特定特性的环境友好型溶剂是众多研究的焦点,其中包括前体选择、彻底表征和潜在应用领域的探索。本研究旨在评估由 N,N-二甲基脲(DMU)和柠檬酸(CA)制备的深共晶溶剂(DES)的理化性质和抗菌活性,突出其与单个前体的差异。我们测试了(DMU,固体)和(CA,固体)的各种质量比变化(DMU:CA = 1.0:1.0;1.0:1.5;1.0:2.0;2.0:1.0;1.5:1.0),以通过熔融工艺制造 DES 溶剂。这两种混合物一般都在 80°C 的温度下熔化。固体熔化后形成的液体一般呈透明色。使用红外线分光光度计进行的分子分析表明,与作为前体的 DMU 和 CA 相比,从一种产品到另一种产品之间存在一些不明显的变化。同样,使用紫外可见分光光度计进行分析,当整个样品溶解在去矿物质水中(2 毫克/毫升)时,光谱显示没有差异。此外,使用分光光度计进行的官能团分析显示出一些微小的变化,主要是由于 DMU:CA 比例的变化导致的峰值移动。这可能是由于 DES 中氢供体和氢受体的相互作用造成的。所有样品都在 202-210 纳米的紫外线区域出现了吸收峰。应用 DES 生产的所有产品都显示出对金黄色葡萄球菌和大肠杆菌的生长抑制活性。对所使用的两种前体进行的相同分析表明,只有 CA 具有活性,而 DMU 没有类似的活性。
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来源期刊
Science and Technology Indonesia
Science and Technology Indonesia Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
1.80
自引率
0.00%
发文量
72
审稿时长
8 weeks
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