食品科学 ›› 2026, Vol. 47 ›› Issue (1): 17-28.doi: 10.7506/spkx1002-6630-20250514-080

• 基础研究 • 上一篇    

利用代谢组学方法研究TGase改性马铃薯蛋白构建的百里香精油纳米乳液对金黄色葡萄球菌和大肠杆菌的抗菌活性与抗菌机制

袁若云,常通,王艺霖,徐鑫,吕奉璋,王淼,马成业,李宏军,汪陈洁   

  1. (1.山东理工大学农业工程与食品科学学院,山东 淄博 255000;2.淄博市疾病预防控制中心,山东 淄博 255000)
  • 发布日期:2026-02-04
  • 基金资助:
    国家自然科学基金青年科学基金项目(32201946);山东省自然科学基金项目(ZR2021QC072)

Antibacterial Activity and Mechanism of Thyme Essential Oil Nanoemulsion Prepared with Potato Protein Modified by Transglutaminase (TGase) against Staphylococcus aureus and Escherichia coli: A Metabolomic Study

YUAN Ruoyun, CHANG Tong, WANG Yilin, XU Xin, LÜ Fengzhang, WANG Miao, MA Chengye, LI Hongjun, WANG Chenjie   

  1. (1. College of Agricultural Engineering and Food Science, Shandong University of Technology, Zibo 255000, China; 2. Zibo Center for Disease Control and Prevention, Zibo 255000, China)
  • Published:2026-02-04

摘要: 以谷氨酰胺转移酶(transglutaminase,TGase)改性的马铃薯蛋白为原料,构建高效负载百里香精油的纳米乳液(TGase-modified potato protein,tPTNs),并对其抗菌活性和抗菌机制进行研究。结果表明,tPTNs对金黄色葡萄球菌(Staphylococcus aureus)和大肠杆菌(Escherichia coli)均表现出较强的抗菌活性,最低抑菌浓度和最小杀菌浓度(minimum bactericidal concentration,MBC)均分别为2.5 mg/mL和5.0 mg/mL。同时,tPTNs对两种菌株的动态抑制均表现出明显的浓度依赖特性,随着tPTNs质量浓度从0 mg/mL增加到MBC,Zeta电位绝对值显著降低,粒径、细胞膜疏水性、电导率、金属离子释放和核酸泄漏均显著增加。此外,十二烷基硫酸钠-聚丙烯酰胺凝胶电泳还显示蛋白质合成受到抑制甚至破坏。采用液相色谱-质谱法对细胞代谢物的变化进行探讨,发现经tPTNs处理的细菌代谢物发生了显著变化,其中S. aureus和E. coli代谢物发生变化的数量分别为1 117 种和692 种。差异代谢物涉及核苷酸代谢、氨基酸代谢、三羧酸循环等代谢途径。本研究可为精油的高效抗菌应用和抗菌机制的探索提供参考。

关键词: 马铃薯蛋白;百里香精油;纳米乳液;抗菌机制;代谢组学

Abstract: In this study, thyme essential oil (TEO) nanoemulsion (tPTNs) was constructed with transglutaminase (TGase)-modified potato protein, and its antibacterial activity and mechanism of action were evaluated and explored. Results indicated that tPTNs exhibited great antibacterial activity against both Staphylococcus aureus and Escherichia coli, with minimal inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) of 2.5 and 5.0 mg/mL, respectively. Also, the antibacterial effects of tPTNs were concentration-dependent. We observed a significant decrease in the absolute value of the zeta potential, and significant increases in particle size, cell membrane hydrophobicity, conductivity, the release of metal ions, and the leakage of nucleic acid as the concentration of tPTNs increased from 0 mg/mL to MBC. Furthermore, sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE) demonstrated that protein synthesis was inhibited or even disrupted. Analysis by liquid chromatography-mass spectrometry (LC-MS) indicated that treatment with tPTNs caused significant changes in bacterial metabolites, 1 117 and 692 differential metabolites being found for S. aureus and E. coli, respectively. The differential metabolites were involved in nucleotide metabolism, amino acid metabolism, tricarboxylic acid cycle and other metabolic pathways. These findings provide valuable insights for the application of thyme essential oil as an efficient antibacterial agent and for the understanding of its mechanism of action.

Key words: potato protein; thyme essential oil; nanoemulsions; antibacterial mechanism; metabolomics

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