水动力条件下放线菌聚集菌对软硬表面的定殖。

I Sliepen, M Van Essche, M Pauwels, J Van Eldere, J Hofkens, M Quirynen, W Teughels
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引用次数: 6

摘要

口腔细菌必须附着在硬组织和软组织上,在各种剪切和流动力的作用下在口腔内定植。模拟这一动态过程的体外模型对于研究可能干扰感染第一步的因素是必不可少的。为了外推的目的,需要评估硬表面和软表面上的定殖动力学之间的可比性。方法:采用改良罗宾斯装置(MRD)和原位图像分析系统两种流动细胞模型,实时观察牙周病原菌放线菌群在玻璃和上皮细胞表面的定植情况。结果:MRD实验中软表面的放线菌数量明显高于玻璃表面。随着时间的推移,坚硬表面的细菌数量不断增加,而柔软表面的细菌数量达到饱和。安装在显微镜下的流动池可以实时监测两个表面的定植过程。结论:这些实验模型可能对牙周病治疗新方法的开发有重要贡献。放线菌可在流动条件下定植,其动态表现出重要的表面依赖特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Colonization of hard and soft surfaces by Aggregatibacter actinomycetemcomitans under hydrodynamic conditions.

Introduction: Oral bacteria must attach to hard and soft tissues to colonize the oral cavity in the presence of a variety of forces caused by shear and flow. In vitro models mimicking this dynamic process are indispensable to study factors that might interfere with the first step towards infection. For extrapolation purposes the comparability between the dynamics of colonization on hard vs. soft surfaces needs to be evaluated.

Methods: The colonization of glass and epithelial cell surfaces by the periodontal pathogen Aggregatibacter actinomycetemcomitans was followed in time with two flow cell models: a modified Robbins device (MRD) and an in situ image analysis system.

Results: The number of A. actinomycetemcomitans recovered from the soft surfaces in the MRD experiments was higher than on glass. The amount of bacteria on the hard surfaces kept increasing with time, while on soft surfaces saturation was reached. The microscope-mounted flow cell allowed real-time in situ monitoring of the colonization process of both surfaces.

Conclusion: These experimental models may have a great contribution to make in the development of new treatment approaches for periodontal diseases. Colonization by A. actinomycetemcomitans could be studied under flow conditions and its dynamics showed important surface-dependent characteristics.

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