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生物废弃物橄榄叶提取物与远程低温大气等离子体流出物的联合抗菌作用

Combined Antimicrobial Effect of Bio-Waste Olive Leaf Extract and Remote Cold Atmospheric Plasma Effluent.

作者信息

De la Ossa Jose Gustavo, El Kadri Hani, Gutierrez-Merino Jorge, Wantock Thomas, Harle Thomas, Seggiani Maurizia, Danti Serena, Di Stefano Rossella, Velliou Eirini

机构信息

Doctoral School in Life Sciences, University of Siena, 53100 Siena, Italy.

Bioprocess and Biochemical Engineering Group (BioProChem), Department of Chemical and Process Engineering, University of Surrey, Guildford GU2 7XH, UK.

出版信息

Molecules. 2021 Mar 26;26(7):1890. doi: 10.3390/molecules26071890.

Abstract

A novel strategy involving Olive Leaf Extract (OLE) and Cold Atmospheric Plasma (CAP) was developed as a green antimicrobial treatment. Specifically, we reported a preliminary investigation on the combined use of OLE + CAP against three pathogens, chosen to represent medical and food industries (i.e., , and ). The results indicated that a concentration of 100 mg/mL (total polyphenols) in OLE can exert an antimicrobial activity, but still insufficient for a total bacterial inactivation. By using plain OLE, we significantly reduced the growth of Gram positive and , but not Gram-negative . Instead, we demonstrated a remarkable decontamination effect of OLE + CAP in , and samples after 6 h. This effect was optimally maintained up to 24 h in strain. and grew again in 24 h. In the latter strain, OLE alone was most effective to significantly reduce bacterial growth. By further adjusting the parameters of OLE + CAP technology, e.g., OLE amount and CAP exposure, it could be possible to prolong the initial powerful decontamination over a longer time. Since OLE derives from a bio-waste and CAP is a non-thermal technology based on ionized air, we propose OLE + CAP as a potential green platform for bacterial decontamination. As a combination, OLE and CAP can lead to better antimicrobial activity than individually and may replace or complement conventional thermal procedures in food and biomedical industries.

摘要

一种涉及橄榄叶提取物(OLE)和冷大气等离子体(CAP)的新型策略被开发为一种绿色抗菌处理方法。具体而言,我们报告了一项关于OLE + CAP联合使用对三种病原体的初步研究,这些病原体被选来代表医疗和食品行业(即 、 和 )。结果表明,OLE中100 mg/mL(总多酚)的浓度可发挥抗菌活性,但仍不足以实现细菌的完全灭活。使用纯OLE时,我们显著降低了革兰氏阳性菌 和 的生长,但对革兰氏阴性菌 没有效果。相反,我们证明了OLE + CAP在处理6小时后对 、 和 样本具有显著的去污效果。在 菌株中,这种效果在长达24小时内都能得到最佳维持。 和 在24小时后再次生长。在后者的菌株中,单独使用OLE对显著降低细菌生长最有效。通过进一步调整OLE + CAP技术的参数,例如OLE用量和CAP暴露时间,有可能在更长时间内延长最初强大的去污效果。由于OLE源自生物废弃物,CAP是一种基于电离空气的非热技术,我们提出OLE + CAP作为一种潜在的绿色细菌去污平台。作为一种组合,OLE和CAP可产生比单独使用更好的抗菌活性,并可能在食品和生物医学行业中替代或补充传统的热处理程序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/018c/8037246/00431b7e5eec/molecules-26-01890-g001.jpg

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