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变形链球菌生物膜对洗涤剂刺激脱落的抗性

Recalcitrance of Streptococcus mutans biofilms towards detergent-stimulated detachment.

作者信息

Landa A S, van de Belt-Gritter B, van der Mei H C, Busscher H J

机构信息

Department of Biomedical Engineering, Groningen, The Netherlands.

出版信息

Eur J Oral Sci. 1999 Aug;107(4):236-43. doi: 10.1046/j.0909-8836.1999.eos107402.x.

DOI:10.1046/j.0909-8836.1999.eos107402.x
PMID:10467938
Abstract

The biofilm mode of growth protects the plaque microorganisms against environmental attacks, such as from antimicrobials or detergents. Detergents have a demonstrated ability to detach initially adhering bacteria from enamel surfaces, but the ability of detergent components to detach plaque bacteria is not always obvious from in vivo experiments and reports on their clinical efficacy are inconsistent. It is likely that antimicrobials or detergents are unable to penetrate the plaque and reach the bacteria that actually link the plaque mass to the substratum surface. Attenuated total reflectance/Fourier transform infrared spectroscopy was used to measure the transport of sodium lauryl sulphate (SLS) through Streptococcus mutans HG 985 biofilms. The transport of SLS to the base of the S. mutans biofilms was not hindered, while moreover an accumulation of SLS near the base of the biofilms was found, suggesting that SLS was adsorbed to biofilm components. X-ray photoelectron spectroscopy confirmed the ability of S. mutans, grown on sucrose supplemented medium, to adsorb SLS, and simultaneously indicated that exposure of cells to SLS might lead to a loss of surface proteins. Furthermore, experiments in a parallel-plate flow chamber demonstrated that initially adhering S. mutans HG 985 could be stimulated to detach by SLS, but that, depending on the growth stage of the biofilm, only maximally 27% of biofilm bacteria could be stimulated to detach by a 4% (w/v) SLS solution.

摘要

生物膜生长模式可保护菌斑微生物免受环境攻击,比如免受抗菌剂或洗涤剂的影响。洗涤剂已被证明有能力使最初附着在牙釉质表面的细菌脱落,但洗涤剂成分使菌斑细菌脱落的能力在体内实验中并不总是很明显,而且关于其临床疗效的报告也不一致。抗菌剂或洗涤剂很可能无法穿透菌斑并到达将菌斑团块与基质表面实际相连的细菌。采用衰减全反射/傅里叶变换红外光谱法来测量月桂基硫酸钠(SLS)通过变形链球菌HG 985生物膜的传输情况。SLS传输到变形链球菌生物膜底部并未受阻,而且还发现生物膜底部附近有SLS积聚,这表明SLS被吸附到了生物膜成分上。X射线光电子能谱证实生长在添加蔗糖培养基上的变形链球菌有吸附SLS的能力,同时表明细胞暴露于SLS可能会导致表面蛋白丢失。此外,在平行平板流动腔中进行的实验表明,最初附着的变形链球菌HG 985可被SLS刺激而脱落,但根据生物膜的生长阶段,4%(w/v)的SLS溶液最多只能刺激27%的生物膜细菌脱落。

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