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Application of bacteriophages for the inactivation of Salmonella spp. in biofilms

机译:噬菌体在沙门氏菌灭活的应用。 在生物膜

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摘要

Microbial biofilms pose a serious threat to food industry, as they are difficult to inactivate or remove owing to their inherent resistance to traditional physical and antimicrobial treatments. Bacteriophages have been suggested as promising biocontrol agents for eliminating biofilms within the food industry. The efficacy of phages (BP 1369 and BP 1370) was evaluated against Salmonella spp. in biofilms. Biofilms were grown on food (lettuce), food contact surfaces (stainless steel and rubber), and MBEC biofilm devices. The efficacy of these phages in reducing biofilms was examined following phage (10(8) PFU/mL) treatment for 2h. Bacteriophage treatment reduced biofilm cells by 3.0, 2.0, and 3.0 log CFU/cm(2) on stainless steel, rubber, and an MBEC device, respectively. The adhered viable cells on lettuce were reduced by more than 1.0 log CFU/cm(2) with phage treatment.
机译:微生物生物膜对食品工业构成严重威胁,因为由于其对传统物理和抗微生物治疗的固有抗性,它们难以灭活或消除。 已经提出噬菌体作为有前途的生物控制剂,用于消除食品工业内的生物膜。 对沙门氏菌SPP评估噬菌体(BP 1369和BP 1370)的疗效。 在生物膜。 生物膜在食品(莴苣),食品接触表面(不锈钢和橡胶)和MBEC生物膜器件上生长。 在噬菌体(10(8)PFU / mL)处理后,检查这些噬菌体在减少生物膜中的疗效(10(8)pfu / ml)处理2小时。 噬菌体治疗分别在不锈钢,橡胶和MBEC器件上减少了3.0,2.0和3.0对数CFU / cm(2)的生物膜细胞。 莴苣上的粘附活细胞减少了噬菌体治疗的1.0°CFU / cm(2)。

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