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Antimicrobial activity, toxicity and stability of phytol as a novel surface disinfectant

机译:植醇作为新型表面消毒剂的抗菌活性,毒性和稳定性

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摘要

Background: Although various surface disinfectants have been introduced, most of them are toxic. The use of natural antimicrobial agent e.g. phytol, extracted from Leptadenia pyrotechnica is a new strategy. The aim of this study was to evaluate the antimicrobial activity, toxicity, and stability of phytol.udMethods: The serial concentrations of phytol were prepared, and separately incubated with four microbial isolates. Then, its Minimum Inhibitory Concentration (MIC) was measured for each microorganism. For toxicity test, serial concentrations (62.5, 125, 250, 500 and 1000 μg/mL) of phytol were incubated with mouse skin cells, and then cell viability was calculated by MTT assay. For stability test, three common surfaces (stone, steel, and MDF) were considered. Then, 100 μL of phytol was separately spread over their surface, and they have been kept at lab panel for 12, 24 and 36 hours. After incubation, two samples were obtained from each surface and inoculated on nutrient agar plates. Finally, colony count was read for each surface. T-test was used to evaluate the significant differences between groups, and P>0.05 considered as level of significant difference.udResults: The MIC50 of phytol against E.coli, C.albicans, and A.niger was 62.5 μg/mL, and against S.aureus was >1000 μg/mL. MTT assay showed that the toxicity of phytol was dose and time dependent. The stability test demonstrated that phytol was stable on the stone, MDF, and steel surfaces until 36 hours.udConclusion: It can be concluded that phytol has high antimicrobial activity, high stability, and low toxicity. This substance must be evaluated at actual conditions.udKeywords: Antimicrobial activity, Phytol, Toxicity, Stability
机译:背景:尽管已经引入了各种表面消毒剂,但大多数都是有毒的。使用天然抗菌剂,例如从烟火小提琴提取的植醇是一种新策略。这项研究的目的是评估植醇的抗菌活性,毒性和稳定性。 ud方法:制备一系列浓度的植醇,并分别与四种微生物分离株孵育。然后,针对每种微生物测量其最小抑制浓度(MIC)。为了进行毒性测试,将一系列浓度(62.5、125、250、500和1000μg/ mL)的植醇与小鼠皮肤细胞一起孵育,然后通过MTT分析计算细胞活力。为了进行稳定性测试,考虑了三个常见的表面(石材,钢和MDF)。然后,将100μL的植醇分别分散在其表面上,并在实验室面板上放置12、24和36小时。温育后,从每个表面获得两个样品,并接种在营养琼脂平板上。最后,读取每个表面的菌落计数。结果:植醇对大肠杆菌,白色念珠菌和黑曲霉的MIC50为62.5μg/ mL,t检验用于评价各组之间的显着性差异,P> 0.05为显着性水平。和针对金黄色葡萄球菌的> 1000μg/ mL。 MTT分析表明,植醇的毒性与剂量和时间有关。稳定性测试表明,植醇在石头,MDF和钢表面上均稳定至36小时。 ud结论:可以得出结论:植醇具有较高的抗菌活性,高稳定性和低毒性。该物质必须在实际条件下进行评估。 ud关键字:抗菌活性,植物醇,毒性,稳定性

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