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Characterization of the Adherence of Clostridium difficile Spores: The Integrity of the Outermost Layer Affects Adherence Properties of Spores of the Epidemic Strain R20291 to Components of the Intestinal Mucosa

机译:艰难梭菌孢子粘附的表征:最外层的完整性影响流行菌株R20291的孢子对肠粘膜成分的粘附特性。

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摘要

Clostridium difficile is the causative agent of the most frequently reported nosocomial diarrhea worldwide. The high incidence of recurrent infection is the main clinical challenge of C. difficile infections (CDI). Formation of C. difficile spores of the epidemic strain has been shown to be essential for recurrent infection and transmission of the disease in a mouse model. However, the underlying mechanisms of how these spores persist in the colonic environment remains unclear. In this work, we characterized the adherence properties of epidemic spores to components of the intestinal mucosa, and we assessed the role of the exosporium integrity in the adherence properties by using cdeC mutant spores with a defective exosporium layer. Our results showed that spores and vegetative cells of the epidemic strain adhered at high levels to monolayers of Caco-2 cells and mucin. Transmission electron micrographs of Caco-2 cells demonstrated that the hair-like projections on the surface of spores are in close proximity with the plasma membrane and microvilli of undifferentiated and differentiated monolayers of Caco-2 cells. Competitive-binding assay in differentiated Caco-2 cells suggests that spore-adherence is mediated by specific binding sites. By using spores of a cdeC mutant we demonstrated that the integrity of the exosporium layer determines the affinity of adherence of C. difficile spores to Caco-2 cells and mucin. Binding of fibronectin and vitronectin to the spore surface was concentration-dependent, and depending on the concentration, spore-adherence to Caco-2 cells was enhanced. In the presence of an aberrantly-assembled exosporium (cdeC spores), binding of fibronectin, but not vitronectin, was increased. Notably, independent of the exosporium integrity, only a fraction of the spores had fibronectin and vitronectin molecules binding to their surface. Collectively, these results demonstrate that the integrity of the exosporium layer of strain contributes to selective spore adherence to components of the intestinal mucosa.
机译:艰难梭菌是全世界最常报告的医院腹泻的病原体。反复感染的高发是艰难梭菌感染(CDI)的主要临床挑战。业已证明,该流行株的艰难梭菌孢子的形成对于小鼠模型中的反复感染和疾病传播至关重要。然而,这些孢子如何在结肠环境中持续存在的潜在机制仍不清楚。在这项工作中,我们表征了流行性孢子对肠粘膜成分的粘附特性,并通过使用具有缺陷性孢子囊层的cdeC突变孢子评估了孢子完整性在粘附特性中的作用。我们的结果表明,该流行株的孢子和营养细胞高水平粘附于Caco-2细胞和粘蛋白的单层。 Caco-2细胞的透射电子显微照片表明,孢子表面上的毛状突起与Caco-2细胞的未分化和分化单层的质膜和微绒毛非常接近。分化的Caco-2细胞中的竞争结合测定表明,孢子粘附是由特异性结合位点介导的。通过使用cdeC突变体的孢子,我们证明了孢子囊外层的完整性决定了艰难梭菌孢子对Caco-2细胞和粘蛋白的粘附亲和力。纤连蛋白和玻连蛋白与孢子表面的结合是浓度依赖性的,并且取决于浓度,孢子对Caco-2细胞的粘附性增强。在异常组装的孢子囊(cdeC孢子)存在下,纤连蛋白而不是玻连蛋白的结合增加。值得注意的是,独立于孢子囊的完整性,只有一小部分的孢子具有纤连蛋白和玻连蛋白分子结合在其表面上。总的来说,这些结果表明,菌株外孢子层的完整性有助于选择性地将孢子粘附至肠粘膜的成分。

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