School of Food Science and Biotechnology , Zhejiang Gongshang University , Hangzhou , Zhejiang 310035 , China.
Zhejiang Provincial Collaborative Innovation Center of Food Safety and Nutrition , Zhejiang Gongshang University , Hangzhou , Zhejiang 310035 , China.
J Agric Food Chem. 2018 Nov 14;66(45):12088-12101. doi: 10.1021/acs.jafc.8b04429. Epub 2018 Nov 5.
This work aims to prepare ferulic acid alkyl esters (FAEs) through the lipase-catalyzed reaction between methyl ferulate and various fatty alcohols in deep eutectic solvents and ascertain their antibacterial activities and mechanisms. Screens of antibacterial effects of FAEs against Escherichia coli ATCC 25922 ( E. coli) and Listeria monocytogenes ATCC 19115 ( L. monocytogenes) revealed that hexyl ferulate (FAC6) exerted excellent bacteriostatic and bactericidal effects on E. coli and L. monocytogenes (minimum inhibitory concentration (MIC): 1.6 and 0.1 mM, minimum bactericidal concentration (MBC): 25.6 and 0.2 mM, respectively). The antibacterial mechanism of FAC6 against E. coli was systematically studied to facilitate its practical use as a food additive with multifunctionalities. The growth and time-kill curves implied the partial cell lysis and inhibition of the growth of E. coli caused by FAC6. The result related to propidium iodide uptake and cell constituents' leakage (K, proteins, nucleotides, and β-galactosidase) implied that bacterial cytomembranes were substantially compromised by FAC6. Variations on morphology and cardiolipin microdomains and membrane hyperpolarization of cells visually verified that FAC6 induced cell elongation and destructed the cell membrane with cell wall perforation. SDS-PAGE analysis and alterations of fluorescence spectra of bacterial membrane proteins manifested that FAC6 caused significant changes in constitutions and conformation of membrane proteins. Furthermore, it also could bind to minor grooves of E. coli DNA to form complexes. Meanwhile, FAC6 exhibited antibiofilm formation activity. These findings indicated that that FAC6 has promising potential to be developed as a multifunctional food additive.
本工作旨在通过脂肪酶催化甲基阿魏酸与各种脂肪醇在深共熔溶剂中的反应,制备阿魏酸烷基酯(FAEs),并确定其抗菌活性和机制。FAEs 对大肠杆菌 ATCC 25922(E. coli)和单核细胞增生李斯特菌 ATCC 19115(L. monocytogenes)的抗菌效果筛选表明,己基阿魏酸酯(FAC6)对 E. coli 和 L. monocytogenes 具有优异的抑菌和杀菌作用(最小抑菌浓度(MIC):1.6 和 0.1 mM,最小杀菌浓度(MBC):25.6 和 0.2 mM)。系统研究了 FAC6 对 E. coli 的抗菌机制,以促进其作为具有多功能性的食品添加剂的实际应用。生长和时间杀伤曲线表明,FAC6 导致部分细胞裂解和 E. coli 生长抑制。与碘化丙啶摄取和细胞成分泄漏(K、蛋白质、核苷酸和β-半乳糖苷酶)相关的结果表明,细菌细胞质膜受到 FAC6 的严重破坏。细胞形态和心磷脂微区的变化以及细胞膜的超极化,直观地验证了 FAC6 诱导细胞伸长并破坏细胞膜,导致细胞壁穿孔。SDS-PAGE 分析和细菌膜蛋白荧光光谱的变化表明,FAC6 导致膜蛋白的组成和构象发生显著变化。此外,它还可以与大肠杆菌 DNA 的小沟结合形成复合物。同时,FAC6 表现出抗生物膜形成活性。这些发现表明,FAC6 具有开发为多功能食品添加剂的巨大潜力。