香旱芹精油对金黄色葡萄球菌抑菌机理的研究Study on the Antibacterial Mechanism of Ajowan Essential Oil Against Staphylococcus aureus
黄巍,王建清,张倩
摘要(Abstract):
采用微波辅助水蒸气蒸馏提取出香旱芹精油,对其成分进行GC-MS分析,通过测试其对金黄色葡萄球菌的抑菌圈直径、最低抑菌浓度(MIC)和最低杀菌浓度(MBC)评价其抑菌效果。分别从菌体微观形态、细胞溶出物、蛋白质和钾离子泄漏等方面研究香旱芹精油对金黄色葡萄球菌的抑菌机理。实验结果表明香旱芹精油的主要成分为百里香酚(45.85%)、对伞花烃(20.72%)和γ-松油烯(23.57%),其对金黄色葡萄球菌的抑菌圈直径为75mm,MIC为0.25μL/mL,MBC为0.5μL/mL。香旱芹精油可使金黄色葡萄球菌细胞膜受到损伤,使细胞膜表面出现塌陷和破裂,并引起菌体细胞溶出物、蛋白质以及钾离子的泄露,从而导致菌体的死亡。
关键词(KeyWords): 香旱芹精油;微波辅助水蒸气蒸馏;GC-MS分析;金黄色葡萄球菌;抑菌机理
基金项目(Foundation): “十二五”国家科技支撑计划项目(2015BAD16B05-02)
作者(Author): 黄巍,王建清,张倩
参考文献(References):
- [1]Juliany R Calo,Philip G Crandall,Corliss A O'Bryan,et al.Essential oils as antimicrobials in food systems:a review[J].Food Control,2015,54:111-119.
- [2]Pesavento G,Calonico C,Bilia A R,et al.Antibacterial activity of Oregano,Rosmarinus and Thymus essential oils against Staphylococcus aureus and Listeria monocytogenes in beef meatballs[J].Food Control,2015,54:188-199.
- [3]柴向华,董艳,吴克刚,等.植物精油对食品中常见有害微生物的抑菌活性研究[J].现代食品科技,2016(8):123-127.
- [4]Akash Kedia,Bhanu Prakash,Prashant Mishra,et al.Trachyspermum ammi L.essential oil as plant based preservative in food system[J].Industrial Crops and Products,2015,69:104-109.
- [5]张赟彬,刘笑宇,姜萍萍,等.肉桂醛对大肠杆菌和金黄色葡萄球菌的抑菌作用及抑菌机理研究[J].现代食品科技,2015(5):31-35.
- [6]丁华,王建清,王玉峰,等.罗勒精油成分分析及抑菌性研究[J].中国调味品,2017,42(2):43-48.
- [7]Han C,Wang J,Li Y,et al.In vitro antimicrobial activity and effect on E.coli integrity of cinnamon essential oil and rhubarb ethanol extract[J].Food Sci Technol Res,2013,19:1155-1163.
- [8]Turgis M,Han J,Caillet S,et al.Antimicrobial activity of mustard essential oil against Escherichia coli O157∶H7and Salmonella typhi[J].Food Control,2009,20:1073-1079.
- [9]He Mengying,Wu Ting,Pan Siyi,et al.Antimicrobial mechanism of flavonoids against Escherichia coli ATCC25922 by model membrane study[J].Applied Surface Science,2014,305:515-521.
- [10]Miao Jianyin,Liu Guo,Ke Chang,et al.Inhibitory effects of a novel antimicrobial peptide from kefir against Escherichia coli[J].Food Control,2016,65:63-72.
- [11]Oroojalian F,Kasra-Kermanshahi R,Azizi M,et al.Phytochemical composition of the essential oils from three Apiaceae species and their antibacterial effects on food-borne pathogens[J].Food Chemistry,2010,120(3):765-770.
- [12]Sharifzadeh A,Khosravi A R,Shokri H,et al.Antifungal effect of Trachyspermum ammi against susceptible and fluconazole-resistant strains of Candida albicans[J].J Mycol Med,2015,25(2):143-150.
- [13]Rota M C,Herrera A,Mart'nez R M,et al.Antimicrobial activity and chemical composition of Thymus vulgaris,Thymus zygis and Thymus hyemalis essential oils[J].Food Control,2008,19(7):681-687.
- [14]Shi Ce,Zhang Xiaowei,Zhao Xingchen,et al.Synergistic interactions of nisin in combination with cinnamaldehyde against Staphylococcus aureus in pasteurized milk[J].Food Control,2017,71:10-16.
- [15]Roya Moghimi,Lida Ghaderi,Hasan Rafati,et al.Superior antibacterial activity of nanoemulsion of Thymus daenensis essential oil against E.coli[J].Food Chemistry 2016,19:410-415.
- [16]Suxia Shen,Tiehua Zhang,Yuan Yuan,et al.Effects of cinnamaldehyde on Escherichia coli and Staphylococcus aureus membrane[J].Food Control,2013,32:582-590.
- [17]Ajiboye T O,Mohammed A O,Bello S A,et al.Antibacterial activity of Syzygium aromaticum seed:studies on oxidative stress biomarkers and membrane permeability[J].Microbial Pathogenesis,2016,95:208-215.
- [18]刘笑宇.肉桂精油的抑菌作用、抑菌机理及其在酱牛肉防腐中的应用[D].上海:上海应用技术学院,2015.
- [19]Vivek K.Bajpai,Ajay Sharma,Kwang-Hyun Baek.Antibacterial mode of action of Cudrania tricuspidatafruit essential oil,affecting membrane permeability and surface characteristics of food-borne pathogens[J].Food Control,2013,32(2):582-590.