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Biofilm Formation by Mycobacterium bovis: Influence of Surface Kind and Temperatures of Sanitizer Treatments on Biofilm Control

机译:牛分枝杆菌形成生物膜:消毒剂的表面种类和温度对生物膜控制的影响

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摘要

Mycobacterium bovis causes classic bovine tuberculosis, a zoonosis which is still a concern in Africa. Biofilm forming ability of two Mycobacterium bovis strains was assessed on coupons of cement, ceramic, or stainless steel in three different microbiological media at 37°C with agitation for 2, 3, or 4 weeks to determine the medium that promotes biofilm. Biofilm mass accumulated on coupons was treated with 2 sanitizers (sanitizer A (5.5 mg L−1 active iodine) and sanitizer B (170.6 g1 alkyl dimethylbenzyl ammonium chloride, 78 g−1 didecyldimethyl ammonium chloride, 107.25 g L−1 glutaraldehyde, 146.25 g L−1 isopropanol, and 20 g L−1 pine oil) at 28 and 45°C and in hot water at 85°C for 5 min. Residual biofilms on treated coupons were quantified using crystal violet binding assay. The two strains had a similar ability to form biofilms on the three surfaces. More biofilms were developed in media containing 5% liver extract. Biofilm mass increased as incubation time increased till the 3rd week. More biofilms were formed on cement than on ceramic and stainless steel surfaces. Treatment with hot water at 85°C reduced biofilm mass, however, sanitizing treatments at 45°C removed more biofilms than at 28°C. However, neither treatment completely eliminated the biofilms. The choice of processing surface and temperatures used for sanitizing treatments had an impact on biofilm formation and its removal from solid surfaces.
机译:牛分枝杆菌引起经典的牛结核病,一种人畜共患病,在非洲仍然很受关注。在37°C下搅拌2、3或4周,在三种不同微生物培养基中的水泥,陶瓷或不锈钢试片上评估了两种牛分枝杆菌菌株的生物膜形成能力,以确定促进生物膜的培养基。用两种消毒剂(消毒剂A(5.5μgL -1 活性碘)和消毒剂B(170.6μg 1 烷基二甲基苄基氯化铵)处理78克,对试样上积累的生物膜质量进行处理。 -1 二癸基二甲基氯化铵,107.25 g L -1 戊二醛,146.25 g L -1 异丙醇和20 g L -1松油)(分别在28和45°C以及在85°C的热水中浸泡5分钟)后,用结晶紫结合法对处理过的试样上的残留生物膜进行定量,这两种菌株在培养上均具有相似的形成生物膜的能力。在含有5%肝提取物的培养基中形成了更多的生物膜,随着培养时间的延长,直到第3周生物膜的质量增加,在水泥上形成的生物膜比在陶瓷和不锈钢表面上形成的生物膜更多,减少了在85°C的热水处理但是,在45°C下进行的消毒处理比28°C下能清除更多的生物膜,但是,两种处理都不能完全消除生物膜。处理表面和用于消毒处理的温度对生物膜形成及其从固体表面去除的影响。

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