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姜精油对 和 的抑菌活性及作用机制。

Antibacterial Activity and Mechanism of Ginger Essential Oil against and .

机构信息

School of Food and Biological Engineering, Hefei University of Technology, Hefei 230601, China.

College of Biological Science and Technology, Fuzhou University, Fuzhou 350108, China.

出版信息

Molecules. 2020 Aug 30;25(17):3955. doi: 10.3390/molecules25173955.

Abstract

Though essential oils exhibit antibacterial activity against food pathogens, their underlying mechanism is understudied. We extracted ginger essential oil (GEO) using supercritical CO and steam distillation. A chemical composition comparison by GC-MS showed that the main components of the extracted GEOs were zingiberene and α-curcumene. Their antibacterial activity and associated mechanism against and were investigated. The diameter of inhibition zone (DIZ) of GEO against was 17.1 mm, with a minimum inhibition concentration (MIC) of 1.0 mg/mL, and minimum bactericide concentration (MBC) of 2.0 mg/mL. For the DIZ was 12.3 mm with MIC and MBC values of 2.0 mg/mL and 4.0 mg/mL, respectively. The SDS-PAGE analysis revealed that some of the electrophoretic bacterial cell proteins bands disappeared with the increase in GEO concentration. Consequently, the nucleic acids content of bacterial suspension was raised significantly and the metabolic activity of bacteria was markedly decreased. GEO could thus inhibit the expression of some genes linked to bacterial energy metabolism, tricarboxylic acid cycle, cell membrane-related proteins, and DNA metabolism. Our findings speculate the bactericidal effects of GEO primarily through disruption of the bacterial cell membrane indicating its suitability in food perseveration.

摘要

尽管精油对食源性病原体表现出抗菌活性,但它们的作用机制仍研究不足。我们使用超临界 CO 和水蒸气蒸馏法从生姜中提取精油。GC-MS 的化学成分比较表明,提取的 GEO 的主要成分是姜烯和α-姜黄烯。研究了它们对 和 的抗菌活性及其相关机制。GEO 对 的抑菌圈直径(DIZ)为 17.1mm,最小抑菌浓度(MIC)为 1.0mg/mL,最小杀菌浓度(MBC)为 2.0mg/mL。对于 ,DIZ 为 12.3mm,MIC 和 MBC 值分别为 2.0mg/mL 和 4.0mg/mL。SDS-PAGE 分析显示,随着 GEO 浓度的增加,一些电泳细菌细胞蛋白条带消失。因此,细菌悬浮液中的核酸含量显著增加,细菌的代谢活性明显降低。因此,GEO 可以抑制与细菌能量代谢、三羧酸循环、细胞膜相关蛋白和 DNA 代谢相关的一些基因的表达。我们的研究结果推测 GEO 的杀菌作用主要是通过破坏细菌细胞膜来实现的,这表明它在食品保鲜方面具有适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a1d/7504760/4adc13c91770/molecules-25-03955-g001.jpg

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