Environmental alteration and two distinct mechanisms of E. coli adherence to bladder epithelial cells.

Investigative urology Pub Date : 1981-03-01
A E Avots-Avotins, R C Fader, C P Davis
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Abstract

We used an in vitro model to investigate Escherichia coli attachment to transitional epithelial cells obtained from bladders of female rats. Adhesive abilities and sensitivity to mannose inhibition differed among the isolates for both epithelial cells and erythrocytes. Adherence of some strains could be modulated by bacterial washes and growth media. Variations in adhesiveness were related to bacterial piliation as determined by transmission electron microscopy. With two strains, mannose inhibition of adherence to epithelial cells was dose-related; however, with a maximal inhibitory dose, adherence was reduced by approximately 80 per cent even when the bacteria-to-epithelial cell ratio was varied. These studies show that adhesiveness and piliation of certain adhesive E. coli strains are either reduced or enhanced by environmental alterations. We conclude that E. coli strains adhere to epithelial cells by at least two distinct mechanisms and that a single isolate may utilize both mechanisms. The more efficient process is pili-mediated and inhibited by mannose whereas undetermined surface components mediate the less efficient but mannose-resistant mechanism.

环境改变和大肠杆菌粘附膀胱上皮细胞的两种不同机制。
我们用体外模型研究了大肠杆菌在雌性大鼠膀胱移行上皮细胞上的附着。对上皮细胞和红细胞的粘附能力和对甘露糖抑制的敏感性不同。一些菌株的粘附可以通过细菌洗涤和生长培养基来调节。通过透射电子显微镜测定,粘附性的变化与细菌亲和性有关。在两株菌株中,甘露糖对上皮细胞粘附的抑制作用与剂量相关;然而,在最大抑制剂量下,即使细菌与上皮细胞的比例发生变化,粘附性也降低了约80%。这些研究表明,某些黏附性大肠杆菌菌株的黏附性和亲和性会因环境改变而降低或增强。我们得出结论,大肠杆菌菌株通过至少两种不同的机制粘附上皮细胞,并且单个分离物可能利用这两种机制。更有效的过程是由毛介导和甘露糖抑制,而不确定的表面成分介导效率较低,但甘露糖抗性机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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