Kim Jong-Hui, Lee Eun-Seon, Song Kyoung-Ja, Kim Bu-Min, Ham Jun-Sang, Oh Mi-Hwa
National Institute of Animal Science, Rural Development Administration, Wanju-gun 55365, Korea.
Foods. 2022 Mar 14;11(6):831. doi: 10.3390/foods11060831.
Lactic acid bacteria biofilms can be used to reduce foodborne pathogen contamination in the food industry. However, studies on growth inhibition of foodborne pathogens by inducing biofilm formation of antagonistic microorganisms on abiotic surfaces are rare. We developed a desiccation-tolerant antimicrobial probiotic biofilm. Lactobacillus sakei M129-1 and Pediococcus pentosaceus M132-2 isolated from fermented Korean foods were found to exhibit broad-spectrum antibacterial activity against Bacillus cereus, Escherichia coli O157:H7, Staphylococcus aureus, Listeria monocytogenes, and Salmonella enterica. Their biofilm levels were significantly (p < 0.05) higher on stainless steel than on polyethylene or ceramic. Biofilms of both isolates showed significantly (p < 0.05) enhanced resistance against desiccation (exposure to 43% atmospheric relative humidity) as compared with the isolates not in the biofilm form. The antimicrobial activity of the isolates was sustained in dried biofilms on stainless steel surface; the initial number of foodborne pathogens (average 7.0 log CFU/mL), inoculated on stainless steel chips containing L. sakei M129-1 or P. pentosaceus M132-2 biofilm decreased to less than 1.0 log CFU within 48 h. The lactic acid bacteria antibacterial biofilms developed in this study may be applied to desiccated environmental surfaces in food-related environments to improve microbiological food safety.
乳酸菌生物膜可用于减少食品工业中食源性病原体的污染。然而,关于通过诱导拮抗微生物在非生物表面形成生物膜来抑制食源性病原体生长的研究却很少。我们开发了一种耐干燥的抗菌益生菌生物膜。从韩国发酵食品中分离出的清酒乳杆菌M129-1和戊糖片球菌M132-2对蜡样芽孢杆菌、大肠杆菌O157:H7、金黄色葡萄球菌、单核细胞增生李斯特菌和肠炎沙门氏菌表现出广谱抗菌活性。它们在不锈钢表面的生物膜水平显著高于在聚乙烯或陶瓷表面(p < 0.05)。与未形成生物膜的菌株相比,两种分离株的生物膜对干燥(暴露于43%的大气相对湿度)均表现出显著增强的抗性(p < 0.05)。分离株的抗菌活性在不锈钢表面的干燥生物膜中得以维持;接种在含有清酒乳杆菌M129-1或戊糖片球菌M132-2生物膜的不锈钢芯片上的食源性病原体初始数量(平均7.0 log CFU/mL)在48小时内降至1.0 log CFU以下。本研究中开发的乳酸菌抗菌生物膜可应用于食品相关环境中的干燥环境表面,以提高微生物食品安全水平。