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等离子体活化水的化学成分分析及其对阴道健康的潜在应用

Analyses of the Chemical Composition of Plasma-Activated Water and Its Potential Applications for Vaginal Health.

作者信息

Kim Hyun-Jin, Shin Hyun-A, Chung Woo-Kyung, Om Ae-Son, Jeon Areum, Kang Eun-Kyung, An Wen, Kang Ju-Seop

机构信息

Department of Pharmacology, College of Medicine, Hanyang University, Seoul 04736, Republic of Korea.

Department of Food and Nutrition, Hanyang University, Seoul 04736, Republic of Korea.

出版信息

Biomedicines. 2023 Nov 23;11(12):3121. doi: 10.3390/biomedicines11123121.

Abstract

This study aimed to elucidate the unique chemical compositions of plasma-activated water (PAW) and the potential antibacterial efficacy of PAW as a novel vaginal cleanser. We analyzed the ion compositions (four anions: F, Cl, NO, SO; five cations: Na, NH, K, Mg, Ca) of several formulations of PAW generated at different electrical powers (12 and 24 V) at various treatment time points (1, 10, and 20 min), and stay durations (immediate, 30, and 60 min). As treatment duration increased, hypochlorous acid (HOCl), Ca, and Mg concentrations increased and Cl concentration decreased. Higher electrical power and longer treatment duration resulted in increased HOCl levels, which acts to prevent the growth of general microorganisms. Notably, PAW had no antibacterial effects against the probiotic, , which produces lactic acid and is important for vaginal health. These findings indicate that PAW contains HOCl and some cations (Ca and Mg), which should help protect against pathogens of the vaginal mucosa and have a cleansing effect within the vaginal environment while not harming beneficial bacteria.

摘要

本研究旨在阐明等离子体活化水(PAW)独特的化学成分以及PAW作为新型阴道清洗剂的潜在抗菌功效。我们分析了在不同电功率(12伏和24伏)、不同处理时间点(1分钟、10分钟和20分钟)以及留存时间(即时、30分钟和60分钟)下生成的几种PAW制剂的离子组成(四种阴离子:F、Cl、NO、SO;五种阳离子:Na、NH、K、Mg、Ca)。随着处理时间的增加,次氯酸(HOCl)、Ca和Mg浓度升高,而Cl浓度降低。更高的电功率和更长的处理时间导致HOCl水平升高,这有助于防止一般微生物的生长。值得注意的是,PAW对益生菌没有抗菌作用,该益生菌产生乳酸且对阴道健康很重要。这些发现表明,PAW含有HOCl和一些阳离子(Ca和Mg),这应有助于抵御阴道黏膜病原体,并在阴道环境中起到清洁作用,同时不会伤害有益细菌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b82/10740551/029bff3deef6/biomedicines-11-03121-g001.jpg

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