Broad-Purpose Solutions of N-Chlorotaurine: A Convenient Synthetic Approach and Comparative Evaluation of Stability and Antimicrobial Activity

IF 2.8 4区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Journal of Chemistry Pub Date : 2024-04-03 DOI:10.1155/2024/8959915
Bohdan Murashevych, Dmitry Girenko, Iryna Koshova, Ganna Maslak, Konstantin Burmistrov, Dmytro Stepanskyi
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Abstract

Solutions of N-chlorotaurine (NCT) are effective microbiocidal agents with a broad spectrum of pharmacological activity and outstanding tolerability. The main problem limiting their medical use is their instability, which is generally inherent in solutions of all chlorine-active compounds. In this work, we developed a new synthetic approach to the synthesis of such solutions, which consists in the activation of granular and fibrous polymeric materials with immobilized N-chlorosulfonamide groups, which act here as a chlorinating agent. It was shown that when such polymers are added to taurine solutions, NCT solutions with a chemical composition suitable for immediate medical use can be obtained. The stability of such solutions under various conditions was analyzed in comparison with NCTs obtained by the classical method from sodium hypochlorite. It was confirmed that the process of decomposition of all studied solutions obeys the kinetic laws of the first-order reaction. It was proven that solutions obtained from granular polymers are more stable both in terms of active chlorine concentration and in terms of pH, and their additional buffering is not needed. The stability of solutions decreases when they are stored in the presence of polymers used, with an increase in the excess of taurine and with acidification. The high sensitivity of all obtained solutions to UV radiation was also noted. The antimicrobial properties of NCT solutions obtained from polymers are not inferior to those obtained from sodium hypochlorite at the same concentration of active chlorine. Considering the stability and compactness of the initial chlorine-active polymers, as well as the possibility of their multiple regeneration, the developed method can form the basis of the technology for obtaining multifunctional NCT solutions for medical purposes with the desired physical and chemical properties without using special equipment or specific reagents.
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N-Chlorotaurine 的多用途溶液:便捷的合成方法以及稳定性和抗菌活性的比较评估
N-Clorotaurine (NCT) 溶液是一种有效的微生物杀灭剂,具有广泛的药理活性和出色的耐受性。限制其医疗用途的主要问题是其不稳定性,这是所有氯活性化合物溶液的固有特性。在这项工作中,我们开发了一种新的合成方法来合成此类溶液,即活化带有固定 N-氯磺酰胺基团的颗粒状和纤维状聚合物材料。研究表明,在牛磺酸溶液中加入这种聚合物后,可以获得化学成分适合直接用于医疗的 NCT 溶液。通过与用传统方法从次氯酸钠中获得的 NCT 进行比较,分析了这种溶液在各种条件下的稳定性。研究证实,所有研究溶液的分解过程都遵循一阶反应动力学规律。事实证明,从颗粒聚合物中获得的溶液在活性氯浓度和 pH 值方面都更加稳定,而且不需要额外的缓冲。当溶液在有所用聚合物存在的情况下储存时,其稳定性会随着牛磺酸过量的增加和酸化而降低。此外,所有获得的溶液对紫外线辐射都非常敏感。在活性氯浓度相同的情况下,用聚合物制成的 NCT 溶液的抗菌性能并不比用次氯酸钠制成的溶液差。考虑到初始氯活性聚合物的稳定性和紧凑性,以及其多次再生的可能性,所开发的方法可作为技术基础,在不使用特殊设备或特定试剂的情况下,获得具有所需物理和化学性质的医用多功能 NCT 溶液。
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来源期刊
Journal of Chemistry
Journal of Chemistry CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
5.90
自引率
3.30%
发文量
345
审稿时长
16 weeks
期刊介绍: Journal of Chemistry is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of chemistry.
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