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Effect of enterocin AS-48 singly or in combination with biocides on planktonic and sessile B. cereus.

机译:肠球菌素AS-48单独或与杀生物剂联合使用对浮游和无梗蜡状芽孢杆菌的影响。

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Enterocin AS-48 was tested singly or in combination with biocides on a cocktail of six Bacillus cereus strains in planktonic state and in biofilms formed on polystyrene microtiter plates. The biocides tested were benzalkonium chloride, cetrimide, hexadecylpyridinium chloride, triclosan, chlorhexidine, polyhexamethylen guanidinium chloride and commercial sanitizers P3 oxonia and P3 topax 66. The numbers of survivors were determined after 60 min incubation with biocides or the biocide-bacteriocin combinations. Addition of enterocin AS-48 (25 mg/l) increased the inactivation of planktonic cells by the quaternary ammonium compounds, bisphenols and biguanines tested in a range of biocide concentrations from 0.25 to 2.5 g/l, and by 4 g/l polyguanine. Increased inactivation of the bacilli was also observed for the combination of enterocin AS-48 with 2.5% P3 oxonia, but not by P3 topax 66. In the sessile state, the bacilli were more resistant to biocides and also to the bacteriocin-biocide combinations. Hexadecylpyridium chloride was the most active biocide on biofilms in the single treatments. In the combined treatments with 50 mg/l bacteriocin, hexadecylpyridinium (2.5 g/l), polyhexamethylen guanidinium chloride (4 g/l) and P3 oxonia (2.5%) achieved complete inactivation of bacilli populations. P3 topax 66 showed the lowest performance among all treatments tested, either singly or in combination with bacteriocin. A cocktail of endospores was challenged with biocides and enterocin AS-48 for 60 min at temperatures of 22 degrees C, 40 degrees C, and 60 degrees C. Enterocin AS-48 did not significantly (p > 0.05) reduce viable counts or increase the lethal effect of biocides. However, treatments with 5 g/l benzalkonium chloride at 60 degrees C, 2.5 g/l hexadecypyridinium at 60 degrees C or P3 oxonia at 0.025% and 60 degrees C or at 0.25% at 22-60 degrees C achieved complete inactivation of bacterial endospores, both singly and in combination with bacteriocin. Significant reductions of viable counts (1-2 log cycles) were also obtained for some treatments with cetrimide, triclosan or polyhexamethylen guanidinium chloride, but not for chlorhexidine (up to 5 g/l) or P3 topax 66 (up to 1%). Polystyrene surfaces dosed with enterocin AS-48 (25 or 50 mg/l) remained free of detectable bacilli from 2 to 24 h after being inoculated with a cocktail of endospores, but stainless steel surfaces dosed with 50 mg/l bacteriocin did not prevent bacterial growth from endospores. Results from this study suggest that enterocin AS-48 could be applied as enhancer of biocide activity against planktonic and sessile B. cereus cells
机译:在六种蜡状芽孢杆菌菌株的混合物上以浮游状态和在聚苯乙烯微量滴定板上形成的生物膜中单独或与杀菌剂组合测试了Enterocin AS-48。所测试的杀生物剂为苯扎氯铵,西曲肽,十六烷基吡啶鎓氯化物,三氯生,氯己定,聚六亚甲基胍氯化物和商业消毒剂P3氧化氧和P3托帕克斯66。与杀生物剂或杀生物剂-杀菌素组合孵育60分钟后,确定存活人数。添加肠球蛋白AS-48(25 mg / l)可以通过在0.25至2.5 g / l的杀生物剂浓度范围内测试的季铵化合物,双酚和双胍,以及4 g / l的聚鸟嘌呤增加浮游生物的失活。还观察到肠球菌素AS-48与2.5%P3氧化onia的结合体对细菌的灭活增加,但P3 Topax 66则不然。在无梗状态下,细菌对杀生物剂以及对细菌素-杀生物剂的结合更具抵抗力。在单次处理中,十六烷基氯化吡啶鎓是生物膜上活性最高的杀菌剂。在联合使用50 mg / l细菌素,十六烷基吡啶鎓(2.5 g / l),聚六亚甲基氯化胍(4 g / l)和P3氧化onia(2.5%)的联合处理中,细菌种群完全失活。在单独或与细菌素组合的所有测试治疗中,P3 topax 66表现出最低的性能。在22°C,40°C和60°C的温度下,用杀菌剂和Enterocin AS-48对内生孢子混合物进行攻击60分钟。EnterocinAS-48并未显着降低(p> 0.05)存活计数或增加杀生物剂的致死作用。但是,在60摄氏度下使用5 g / l的苯扎氯铵,在60摄氏度下使用2.5 g / l十六烷基吡啶或在0.025%和60摄氏度下使用P3氧化锆或在22-60摄氏度下使用0.25%的氧化处理可以完全灭活细菌内生孢子,单独使用或与细菌素结合使用。对于某些用鲸蜡胺,三氯生或聚六亚甲基胍氯化物的处理,存活数也显着减少(1-2个对数周期),但洗必泰(最高5 g / l)或P3黄曲霉66(最高1%)却没有。接种肠球菌混合物后2到24小时内,用肠球菌素AS-48(25或50 mg / l)施用的聚苯乙烯表面仍然没有可检出的细菌,但是用50 mg / l细菌素施用的不锈钢表面不能预防细菌从内生孢子生长。这项研究的结果表明,肠球菌素AS-48可用作抗浮游和无蜡芽孢杆菌细胞杀生物剂活性的增强剂。

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