采用l -最优混合设计研究辣木、肉桂和黑草精油对金黄色葡萄球菌的协同抑菌作用。

IF 3.7 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Samah H Abu-Hussien, Antony R Nasry, Ziad Samy, Salwa M El-Sayed, Ashraf Bakry, Naglaa Ebeed, Hesham Elhariry, Thanaa ElNoby
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引用次数: 0

摘要

迫切需要解决多药耐药细菌中日益严重的抗微生物药物耐药性问题,需要开发开拓性的治疗方法。本研究旨在评价辣木(Moringa oleifera,辣木)、肉桂(Cinnamomum verum,肉桂)和黑籽(Nigella sativa,黑籽)精油(EOs)的抑菌潜力,以及这些精油混合后对金黄色葡萄球菌MCC 1351的协同作用。统计模型显示肉桂油具有最高的个体抗菌效力,其次是黑籽油。与单个精油相比,3种精油组合具有显著的协同效应,其分数抑制浓度(∑FIC)指数为0.27。l -响应面法(RSM)优化配伍设计,经15次运行(0.338:0.307:0.355 mL),以1:1:1的比例确定最佳配伍为辣木:肉桂:黑籽油。这种混合物表现出显著的抗菌效果,优于单个油和传统抗生素,如四环素。其中,辣木油、肉桂油和黑籽油的MIC值分别从3.12、0.78和6.25降至0.25、0.06和0.78 μg/mL。油脂之间的协同作用进一步提高了功效,辣木-肉桂和肉桂-黑籽配对显示出最强的协同作用。所建立的IZD和MIC预测模型拟合良好,R2分别为0.9843和0.9958。帕累托图分析强调了主要的个体和协同效应,辣木和肉桂的相互作用表现出最高的正协同效应。值得注意的是,实验15的混合油表现出良好的生物相容性,在每mL 200 μL的浓度下暴露24 h后,正常人皮肤成纤维细胞(HSF)的存活率保持在97.6%。气相色谱-质谱(GC/MS)鉴定出丰富的生物活性植物化学物质,如肉桂醛、亚油酸和棕榈酸甲酯,这些都是观察到的抗菌作用的基础。这种合理设计的,协同的植物化学组合提出了一种有希望的天然治疗抗生素耐药金黄色葡萄球菌,同时表现出最小的细胞毒性。这些结果强调了如何结合精油可以帮助解决金黄色葡萄球菌的抗生素耐药性问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synergistic antimicrobial activity of essential oils mixture of Moringa oleifera, Cinnamomum verum and Nigella sativa against Staphylococcus aureus using L-optimal mixture design.

The urgent need to address the growing problem of antimicrobial resistance in multidrug-resistant bacteria requires the development of pioneering approaches to treatment. The present study aims to evaluate the antimicrobial potential of the essential oils (EOs) of Moringa oleifera (moringa), Cinnamomum verum (cinnamon), and Nigella sativa (black seed) and the synergistic effect of the mixture of these oils against Staphylococcus aureus MCC 1351. Statistical modeling revealed cinnamon oil had the highest individual antimicrobial potency, followed by black seed oil. The combination of the three EOs exhibited significant synergistic effects compared to the individual oils, with a Fractional Inhibitory Concentration (∑FIC) index of 0.27. L-Optimal mixture design of response surface methodology (RSM) identified the optimal mixture as moringa: cinnamon: black seed oils by the ratio of (1:1:1) in run 15 (0.338:0.307:0.355 mL) (v/v). This mixture exhibited significant antibacterial efficacy, outperforming individual oils and conventional antibiotics like tetracycline. Specifically, the combination reduced the MIC values from 3.12, 0.78, and 6.25 to 0.25, 0.06, and 0.78 μg/mL for moringa, cinnamon, and black seed oil, respectively. Synergistic interactions between oils further boosted efficacy, with moringa-cinnamon and cinnamon-black seed pairings exhibiting the strongest synergies. The developed predictive models for IZD and MIC showed excellent fit, with R2 values of 0.9843 and 0.9958, respectively. Pareto chart analysis highlighted the predominant individual and synergistic effects, with the Moringa-Cinnamon interaction exhibiting the highest positive synergy. Notably, the oil mixture of run 15 demonstrated excellent biocompatibility, maintaining 97.6% viability of normal human skin fibroblasts (HSF) after 24 h exposure to 200 μL EOs of the mixture per mL. Gas chromatography mass spectrometry (GC/MS) identified abundant bioactive phytochemicals like cinnamaldehyde, linoleic acid, and palmitic acid methyl esters underlying the observed antimicrobial effects. This rationally designed, synergistic phytochemical combination presents a promising natural therapeutic against antibiotic-resistant S. aureus while exhibiting minimal cytotoxicity. The results underscore how combining essential oils could help address the issue of antibiotic resistance in S. aureus.

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来源期刊
AMB Express
AMB Express BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
7.20
自引率
2.70%
发文量
141
审稿时长
13 weeks
期刊介绍: AMB Express is a high quality journal that brings together research in the area of Applied and Industrial Microbiology with a particular interest in ''White Biotechnology'' and ''Red Biotechnology''. The emphasis is on processes employing microorganisms, eukaryotic cell cultures or enzymes for the biosynthesis, transformation and degradation of compounds. This includes fine and bulk chemicals, polymeric compounds and enzymes or other proteins. Downstream processes are also considered. Integrated processes combining biochemical and chemical processes are also published.
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