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简单制备的电解水作为体外创伤愈合剂的毒性、致突变性和稳定性评估。

Toxicity, mutagenicity and stability assessment of simply produced electrolyzed water as a wound healing agent in vitro.

机构信息

52998Yeditepe University, Department of Pharmaceutical Toxicology, Faculty of Pharmacy, Istanbul, Turkey.

Hamidiye Health Science Institute, Department of Biotechnology, University of Health Sciences, Istanbul, Turkey.

出版信息

Hum Exp Toxicol. 2021 Mar;40(3):452-463. doi: 10.1177/0960327120952151. Epub 2020 Sep 10.

Abstract

Over the last decade, electrolyzed water (EW) produced by salt and tap water has gained importance due to its antimicrobial effects. Regarding to chlorine-based compounds, EW also used in post-harvest safety of food processing and sterilization of surfaces. The latest studies suggested that EW might act as wound healing agent due to anti-infective and cell proliferative properties. In this study, we evaluated acute contact cytotoxicity in L929 mice fibroblast cells and wound healing activity of EWs In addition, mutagenic activity was evaluated by Ames test with and without metabolic activation by S9 fraction and the stability profile of freshly prepared EWs has been followed up. According to the results, strong acid (StAEW) and mixed EW (MEW) showed dose-dependent cytotoxicity due to possible high HOCl concentration, while slightly acidic and catholyte EW (CEW) were not cytotoxic even applied directly for 30 sec. Further, StAEW and CEW showed a significant increase in L929 cell migration in scratch assay. Likewise, with/ without metabolic activation, neither of EWs had shown mutagenic profile in TA 98 and TA100 strains of Follow-up of ORP (oxidation-reduction potential), pH and FCC (free chlorine concentration) showed that temperature and light were important storage conditions to maintain a stable profile particularly for ORP and FCC, which are the most important indicators for biological activity of EW. According to the present findings, it can be suggested that particularly StAEW, may represent a valuable wound healing agent with an achievable, economical and easy production system when stored under proper conditions.

摘要

在过去的十年中,由于电解水(EW)具有抗菌作用,因此由盐和自来水生产的电解水变得越来越重要。与基于氯的化合物一样,EW 还用于食品加工后的安全处理和表面消毒。最新的研究表明,由于具有抗感染和细胞增殖特性,EW 可能具有作为伤口愈合剂的作用。在这项研究中,我们评估了 L929 小鼠成纤维细胞的急性接触细胞毒性和 EWs 的伤口愈合活性。此外,通过添加和不添加 S9 部分进行代谢激活的 Ames 试验评估了致突变活性,并跟踪了新鲜制备的 EWs 的稳定性。根据结果,强酸(StAEW)和混合 EW(MEW)由于可能存在高 HOCl 浓度而显示出剂量依赖性细胞毒性,而弱酸和阴极 EW(CEW)即使直接应用 30 秒也没有细胞毒性。此外,StAEW 和 CEW 在划痕试验中显示出 L929 细胞迁移的显著增加。同样,无论是否进行代谢激活,EWs 在 TA98 和 TA100 菌株中均未显示出致突变特征。氧化还原电位(ORP)、pH 值和游离氯浓度(FCC)的后续跟踪表明,温度和光照是保持稳定特性的重要储存条件,特别是对于 ORP 和 FCC,它们是 EW 生物活性的最重要指标。根据目前的发现,可以认为特别是强酸 EW,当在适当的条件下储存时,可能代表一种有价值的伤口愈合剂,具有可实现、经济和简单的生产系统。

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