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Use of Potential Probiotic Lactic Acid Bacteria (LAB) Biofilms for the Control of Listeria monocytogenes Salmonella Typhimurium and Escherichia coli O157:H7 Biofilms Formation

机译:潜在的益生菌乳酸菌(LAB)生物膜用于控制单核细胞增生李斯特菌鼠伤寒沙门氏菌和大肠杆菌O157:H7生物膜的形成

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摘要

Use of probiotic biofilms can be an alternative approach for reducing the formation of pathogenic biofilms in food industries. The aims of this study were (i) to evaluate the probiotic properties of bacteriocinogenic (Lactococcus lactis VB69, L. lactis VB94, Lactobacillus sakei MBSa1, and Lactobacillus curvatus MBSa3) and non-bacteriocinogenic (L. lactis 368, Lactobacillus helveticus 354, Lactobacillus casei 40, and Weissela viridescens 113) lactic acid bacteria (LAB) isolated from Brazilian’s foods and (ii) to develop protective biofilms with these strains and test them for exclusion of Listeria monocytogenes, Escherichia coli O157:H7, and Salmonella Typhimurium. LAB were tested for survival in acid and bile salt conditions, surface properties, biosurfactant production, β-galactosidase and gelatinase activity, antibiotic resistance and presence of virulence genes. Most strains survived exposure to pH 2 and 4% bile salts. The highest percentages of auto-aggregation were obtained after 24 h of incubation. Sixty-seven percentage auto-aggregation value was observed in W. viridescens 113 and Lactobacillus curvatus MBSa3 exhibited the highest co-aggregation (69% with Listeria monocytogenes and 74.6% with E. coli O157:H7), while the lowest co-aggregation was exhibited by W. viridescens 113 (53.4% with Listeria monocytogenes and 38% with E. coli O157:H7). Tests for hemolytic activity, bacterial cell adherence with xylene, and drop collapse confirmed the biosurfactant-producing ability of most strains. Only one strain (L. lactis 368) produced β-galactosidase. All strains were negative for virulence genes cob, ccf, cylLL, cylLs, cyllM, cylB, cylA and efaAfs and gelatinase production. The antibiotic susceptibility tests indicated that the MIC for ciprofloxacin, clindamycin, gentamicin, kanamycin, and streptomycin did not exceed the epidemiological cut-off suggested by the European Food Safety Authority. Some strains were resistant to one or more antibiotics and resistance to antibiotics was species and strain dependent. In the protective biofilm assays, strains L. lactis 368 (bac-), Lactobacillus curvatus MBSa3 (bac+), and Lactobacillus sakei MBSa1 (bac+) resulted in more than six log reductions in the pathogens counts when compared to the controls. This effect could not be attributed to bacteriocin production. These results suggest that these potential probiotic strains can be used as alternatives for control of biofilm formation by pathogenic bacteria in the food industry, without conferring a risk to the consumers.
机译:益生菌生物膜的使用可以是减少食品工业中病原性生物膜形成的另一种方法。这项研究的目的是(i)评估细菌致癌性(乳酸乳球菌VB69,乳酸乳球菌VB94,日本乳酸杆菌MBSa1和弯乳杆菌MBSa3)和非细菌致癌性(乳酸乳球菌368,乳酸杆菌354,乳酸杆菌)的益生菌性质。 Casei 40和Weissela viridescens 113)从巴西食品中分离出乳酸菌(LAB),以及(ii)用这些菌株形成保护性生物膜,并测试它们是否排除了李斯特菌,大肠杆菌O157:H7和鼠伤寒沙门氏菌。测试了LAB在酸性和胆汁盐条件下的存活率,表面特性,生物表面活性剂的产生,β-半乳糖苷酶和明胶酶的活性,抗生素抗性和毒力基因的存在。大多数菌株在暴露于pH 2和4%胆汁盐下均幸免。孵育24小时后,自动聚集的百分比最高。在W. viridescens 113中观察到67%的自动聚集值,而弯曲乳杆菌MBSa3表现出最高的共同聚集(单核细胞增生性李斯特菌占69%,大肠杆菌O157:H7占74.6%),而最低的共同聚集为W. viridescens 113(单核细胞增生性李斯特菌53.4%,大肠杆菌 O157:H7 38%)显示。溶血活性,细菌细胞与二甲苯的粘附以及液滴崩塌的测试证实了大多数菌株的生物表面活性剂生产能力。只有一种菌株(乳酸乳杆菌 368)产生β-半乳糖苷酶。所有菌株的毒力基因 cob,ccf,cylLL,cylLs,cyllM,cylB,cylA efaAfs 和明胶酶生产均为阴性。抗生素药敏试验表明,环丙沙星,克林霉素,庆大霉素,卡那霉素和链霉素的MIC均未超过欧洲食品安全局建议的流行病学临界值。一些菌株对一种或多种抗生素具有抗性,并且对抗生素的抗性是物种和菌株依赖性的。在保护性生物膜测定中,菌株 L。乳酸菌368(bac-),弯曲杆菌(Lemtobacillus curvatus) MBSa3(bac +)和日本乳酸杆菌(MBem) MBSa1(bac +)导致病原体数量减少了超过6个对数与控件相比。该作用不能归因于细菌素的产生。这些结果表明,这些潜在的益生菌菌株可以用作食品工业中病原菌控制生物膜形成的替代方法,而不会给消费者带来风险。

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