氟化物、三氯生和有机弱酸对口腔链球菌生物膜和悬浮细胞精氨酸脱亚胺酶系统的调节作用。

E Barboza-Silva, A C D Castro, R E Marquis
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引用次数: 5

摘要

口腔细菌的精氨酸脱亚胺酶系统(ADS)是牙菌斑中碱(氨)的主要产生者,被认为具有抗菌作用。然而,口腔护理产品中使用的许多抗菌剂可能会减少ADS产生的碱。我们的工作目的是评估口服链球菌ADS对常用抗菌剂、氟化物、三氯生和有机弱酸的敏感性。方法:采用悬浮培养法和单生物膜法分别培养血链球菌NCTC 10904和ratti链球菌FA-1。测定了pH值为4、5和6时ADS的活性,并从降低精氨酸产碱、抑制ADS酶和改变精氨酸摄取的角度确定了这些药剂的作用。结果:pH值在4到6之间变化对ADS活性影响不大,细胞悬浮液的ADS活性高于生物膜。NaF是一种较差的抑制剂,而三氯生对悬浮细胞和生物膜的抑制剂量分别为0.03 ~ 0.05 mm-h和0.10 ~ 0.15 mm-h,抑制剂量为50%。弱酸吲哚美辛在pH为4.0时的效力几乎与三氯生一样,而癸酸和月桂酸的效力较弱,特别是对生物膜。月桂酸甲酯有轻微刺激作用。抑制剂的主要目标似乎是精氨酸摄取的运输系统,尽管氨基甲酸酯激酶是次要目标。结论:三氯生、吲哚美辛、癸酸酯和月桂酸酯可降低牙菌斑中ADS活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fluoride, triclosan and organic weak acids as modulators of the arginine deiminase system in biofilms and suspension cells of oral streptococci.

Introduction: The arginine deiminase system (ADS) of oral bacteria is a major generator of alkali (ammonia) in dental plaque and is considered to have anticaries effects. However, many of the antimicrobial agents used in oral care products may reduce alkali production by the ADS. The objective of our work was to assess the sensitivity of the ADS of oral streptococci to commonly used antimicrobials, fluoride, triclosan and organic weak acids.

Methods: Streptococcus sanguinis NCTC 10904 and Streptococcus ratti FA-1 were grown in suspension cultures and mono-organism biofilms. ADS activity at pH values of 4, 5 and 6 was assessed, and the actions of the agents was determined in terms of reduced production of alkali from arginine, inhibition of ADS enzymes and changes in uptake of arginine.

Results: ADS activity was not greatly affected by pH changes between 4 and 6 and was greater per unit of biomass for cell suspensions than for biofilms. NaF was a poor inhibitor, while triclosan was highly effective with a 50% inhibitory dose for the two organisms between 0.03 and 0.05 and between 0.10 and 0.15 mm-h for suspension cells and biofilms, respectively. The weak acid indomethacin was nearly as potent at pH 4.0 as triclosan, while capric and lauric acids were less potent, especially for biofilms. The methyl ester of lauric acid was slightly stimulatory. The major targets for the inhibitors appeared to be transport systems for arginine uptake, although carbamate kinase was a secondary target.

Conclusion: Triclosan, indomethacin, caprate and laurate can reduce ADS activity in dental plaque.

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