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含抗菌剂漱口水对血链球菌生物膜形成和生存能力影响的体外研究

In vitro studies of the effect of antiseptic-containing mouthwashes on the formation and viability of Streptococcus sanguis biofilms.

作者信息

Pratten J, Wills K, Barnett P, Wilson M

机构信息

Department of Microbiology, Eastman Dental Institute for Oral Health Care Sciences, University of London, UK.

出版信息

J Appl Microbiol. 1998 Jun;84(6):1149-55. doi: 10.1046/j.1365-2672.1998.00462.x.

Abstract

The aims of this study were to evaluate the growth of Streptococcus sanguis on hydroxyapatite, bovine enamel and polytetrafluoroethylene substrata in a constant depth film fermentor, and to determine the effects of three antimicrobial-containing mouthwashes on biofilm formation and bacterial viability on hydroxyapatite and enamel. There was little difference in the final cell density (5 x 10(4) cfu mm-2) of the Strep. sanguis biofilm on the three substrata. When hydroxyapatite-grown biofilms were exposed to the mouthwashes for 1 min, the one containing triclosan (T) proved the most effective. The chlorhexidine-containing mouthwash (CX) also achieved significant kills. The T-containing mouthwash was the most effective at killing biofilms grown on enamel. Pre-treatment of hydroxyapatite with CX, cetylpyridium chloride (CPC) or T for 1 min resulted in undetectable biofilm formation after 8 h. After 8 h of growth, only biofilms grown on enamel discs pre-treated with CX showed a reduction in the number of viable organisms. In conclusion, the results of this study have shown that while growth of Strep. sanguis on hydroxyapatite and enamel were similar, the ability of antimicrobial agents to prevent the accumulation of viable bacteria depended on the nature of the substratum.

摘要

本研究的目的是评估血链球菌在恒深膜发酵罐中的羟基磷灰石、牛牙釉质和聚四氟乙烯基质上的生长情况,并确定三种含抗菌剂的漱口水对羟基磷灰石和牙釉质上生物膜形成及细菌活力的影响。三种基质上血链球菌生物膜的最终细胞密度(5×10⁴ cfu mm⁻²)几乎没有差异。当将在羟基磷灰石上生长的生物膜暴露于漱口水1分钟时,含三氯生(T)的漱口水被证明是最有效的。含氯己定的漱口水(CX)也实现了显著的杀菌效果。含T的漱口水在杀死牙釉质上生长的生物膜方面最有效。用CX、西吡氯铵(CPC)或T对羟基磷灰石进行1分钟预处理后,8小时后未检测到生物膜形成。生长8小时后,只有在用CX预处理的牙釉质盘上生长的生物膜显示出活菌数量减少。总之,本研究结果表明,虽然血链球菌在羟基磷灰石和牙釉质上的生长情况相似,但抗菌剂预防活菌积累的能力取决于基质的性质。

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