Sorption of Streptococcus faecium to glass.

D. Ørstavik
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引用次数: 9

Abstract

A method has been developed by which to study the sorption of Streptococcus faecium to soda-lime cover glasses. Conditions were chosen to minimize the influence on sorption of bacterial polymer production, passive sorption being studied rather than attachment mediated by metabolic activities. Sorption of S. faecium increased with increasing temperature (to 50 degrees C), time, and cell concentration, but equilibrium apparently was not reached even after incubation for 8 hours or at a cell concentration of 3 X 10(10) per ml. Sorption increased with solute molarity up to 0.1 M concentration of NaCl and KCl, indicating an effect of the electrical double layers on the apposition of cells to the glass surface. Desorption of bacteria could be obtained after multiple washings of the glasses in buffer or by the action of Tween 80, but not if sorbed bacteria were left in distilled water, various salt solutions, urea, or in suspensions of unlabelled bacteria. It was concluded that sorption occurred as a result of chemical interactions between the glass and the cell surface. Tween 80 at a concentration of 1 per cent inhibited sorption to 26 per cent of buffer controls, 2 M urea was less effective, and 1 M NaCl was without effect. It is suggested that hydrophobic interactions may be of importance in the binding of S. faecium to glass.
粪链球菌在玻璃上的吸附。
建立了一种研究屎链球菌在钠石灰玻璃上吸附的方法。选择了对细菌聚合物吸附影响最小的条件,研究了被动吸附而不是代谢活动介导的附着。粪球菌的吸附随温度(至50℃)、时间和细胞浓度的增加而增加,但即使在孵育8小时或细胞浓度为3 X 10(10) / ml时也明显没有达到平衡。当NaCl和KCl浓度达到0.1 M时,吸附随溶质摩尔浓度的增加而增加,这表明双电层对细胞与玻璃表面的附着有影响。在缓冲液中多次洗涤或Tween 80的作用下,细菌可以解吸,但如果将被吸附的细菌留在蒸馏水、各种盐溶液、尿素或未标记细菌的悬浮液中,则不能解吸。结果表明,吸附是玻璃与细胞表面化学相互作用的结果。浓度为1%的吐温80抑制了26%的缓冲液的吸附,2 M尿素的效果较差,1 M NaCl没有效果。这表明疏水相互作用可能在粪球菌与玻璃的结合中起重要作用。
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