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Physico-chemical surface characterization of a bacterial population isolated from a milking machine

机译:从挤奶机分离出的细菌种群的理化表面特征

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摘要

The hydrophobicity of 26 species of bacteria representative of the main genera isolated from a rubber short milk tube, which is a constituent of a cluster from a milking machine, was determined. The materials forming the cluster namely rubber, stainless steel (SS) 316, stainless steel (SS) 304, glass and polymethylmethacrylate (PMMA) were also assayed in terms of hydrophobicity. In relation with the hydrophobicity of bacteria, all the strains of Lactobacillus lactis lactis as well as of Enterococcus faecalis are hydrophobic. Concerning Pseudomonas aeruginosa and Staphylococcus sciuri, some are hydrophobic and others are hydrophilic. All the materials are hydrophobic, being rubber, SS 316 and SS 304 the most hydrophobic surfaces while glass is the less hydrophobic. The free energy of adhesion between the bacteria and the materials in aqueous medium was calculated and used to predict which material of the cluster has a higher ability for biofilm formation and by this way contribute for milk contamination due to the release of bacteria from the deposit. For all the situations studied, adhesion is thermodynamically favourable to SS 316, SS 304 and rubber and less favourable to PMMA and glass.
机译:确定了代表从橡胶短奶管分离的主要属的26种细菌的疏水性,该橡胶短奶管是挤奶机中菌簇的组成部分。还根据疏水性测定了形成簇的材料,即橡胶,不锈钢(SS)316,不锈钢(SS)304,玻璃和聚甲基丙烯酸甲酯(PMMA)。关于细菌的疏水性,乳酸乳球菌和粪肠球菌的所有菌株都是疏水性的。关于铜绿假单胞菌和葡萄球菌,一些是疏水的,而另一些是亲水的。所有材料都是疏水性的,橡胶,SS 316和SS 304是最疏水的表面,而玻璃的疏水性较小。计算了细菌与水介质中的物质之间粘附的自由能,并将其用于预测簇中的哪种物质具有更高的生物膜形成能力,并且由于细菌从沉积物中释放出来,因此有助于牛奶污染。在所研究的所有情况下,粘合力对SS 316,SS 304和橡胶在热力学上均有利,而对PMMA和玻璃的粘合则较差。

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