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Bond Strengthening in Oral Bacterial Adhesion to Salivary Conditioning Films

机译:唾液调节膜在口腔细菌粘附中的结合增强。

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摘要

Transition from reversible to irreversible bacterial adhesion is a highly relevant but poorly understood step in initial biofilm formation. We hypothesize that in oral biofilm formation, irreversible adhesion is caused by bond strengthening due to specific bacterial interactions with salivary conditioning films. Here, we compared the initial adhesion of six oral bacterial strains to salivary conditioning films with their adhesion to a bovine serum albumin (BSA) coating and related their adhesion to the strengthening of the binding forces measured with bacteria-coated atomic force microscopy cantilevers. All strains adhered in higher numbers to salivary conditioning films than to BSA coatings, and specific bacterial interactions with salivary conditioning films were accompanied by stronger initial adhesion forces. Bond strengthening occurred on a time scale of several tens of seconds and was slower for actinomyces than for streptococci. Nonspecific interactions between bacteria and BSA coatings strengthened twofold faster than their specific interactions with salivary conditioning films, likely because specific interactions require a closer approach of interacting surfaces with the removal of interfacial water and a more extensive rearrangement of surface structures. After bond strengthening, bacterial adhesion forces with a salivary conditioning film remained stronger than those with BSA coatings.
机译:从可逆的细菌粘附转变为不可逆的细菌粘附是初始生物膜形成过程中高度相关但知之甚少的步骤。我们假设在口腔生物膜的形成中,不可逆的粘附是由于与唾液调理膜的特定细菌相互作用而导致的键增强引起的。在这里,我们比较了六种口腔细菌菌株与唾液调理膜的初始粘附力与它们与牛血清白蛋白(BSA)涂层的粘附力,并将它们的粘附力与细菌涂覆的原子力显微镜悬臂梁的结合力的增强相关。所有菌株与唾液调理膜的粘附数量均高于BSA涂层,并且与唾液调理膜的特定细菌相互作用伴随着更强的初始粘附力。结合增强发生在几十秒的时间范围内,放线菌比链球菌慢。细菌和BSA涂层之间的非特异性相互作用比其与唾液调理膜的特异性相互作用增强的速度快两倍,这可能是因为特异性相互作用需要更紧密的相互作用表面方法,包括去除界面水和更广泛的表面结构重排。粘合增强后,唾液调理膜的细菌粘附力仍比BSA涂层的细菌粘附力强。

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