Van Loveren C
Department of Cariology Endodontology Pedodontology, Academic Centre for Dentistry Amsterdam, The Netherlands.
Caries Res. 2001;35 Suppl 1:65-70. doi: 10.1159/000049114.
This manuscript discusses the antimicrobial activity of fluoride and its in vivo importance in order to identify research questions. There is a lot of information on mechanisms by which fluoride may interfere with bacterial metabolism and dental plaque acidogenicity. The antimicrobial activity of fluoride products is enhanced when fluoride is associated with antimicrobial cations like Sn(2+) and amine. It is not clear whether the antimicrobial mechanisms of fluoride are operating in vivo or even to what extent antimicrobial activity can contribute to caries prevention. This latter question may be the most important one in research.
本手稿讨论了氟化物的抗菌活性及其在体内的重要性,以便确定研究问题。关于氟化物可能干扰细菌代谢和牙菌斑产酸性的机制,有大量信息。当氟化物与抗菌阳离子如Sn(2+)和胺结合时,氟化物产品的抗菌活性会增强。目前尚不清楚氟化物的抗菌机制是否在体内发挥作用,甚至不清楚抗菌活性在多大程度上有助于预防龋齿。后一个问题可能是研究中最重要的问题。