Ihalin Riikka, Loimaranta Vuokko, Lenander-Lumikari Marianne, Tenovuo Jorma
Institute of Dentistry, Turku Immunology Centre and TuBS, University of Turku, Turku, Finland.
J Med Microbiol. 2001 Jan;50(1):42-48. doi: 10.1099/0022-1317-50-1-42.
Previous studies have shown that the peroxidase system with iodide is particularly effective against Actinobacillus actinomycetemcomitans. In the present study, the effects of iodide, chloride and thiocyanate in combinations with lactoperoxidase (LP) and myeloperoxidase (MP) on the viability of Porphyromonas gingivalis, Fusobacterium nucleatum, Streptococcus mutans and S. rattus were analysed. Bacteria were incubated in buffer solution containing peroxidase, substrate(s) and H2O2 (all in oral physiological concentrations), and plated after 0, 0.5 and 1 h. The oxidation product of iodide was the most bactericidal against all the bacteria tested. The effect was significantly weaker on mutans streptococci. Physiological concentrations of thiocyanate abolished the effects of LP-H2O2-iodide and MP-H2O2-iodide/chloride combinations. Thiocyanate-peroxidase systems have already been used in oral hygiene products. The incorporation of iodide into these products could make them much more potent against periodontal pathogens, and also help to prevent transmission of these pathogens from person to person via saliva.
先前的研究表明,含碘化物的过氧化物酶系统对伴放线放线杆菌特别有效。在本研究中,分析了碘化物、氯化物和硫氰酸盐与乳过氧化物酶(LP)和髓过氧化物酶(MP)联合使用对牙龈卟啉单胞菌、具核梭杆菌、变形链球菌和鼠链球菌生存能力的影响。将细菌在含有过氧化物酶、底物和H2O2(均为口腔生理浓度)的缓冲溶液中孵育,并在0、0.5和1小时后进行平板接种。碘化物的氧化产物对所有测试细菌的杀菌作用最强。对变形链球菌的作用明显较弱。生理浓度的硫氰酸盐消除了LP-H2O2-碘化物和MP-H2O2-碘化物/氯化物组合的作用。硫氰酸盐-过氧化物酶系统已用于口腔卫生产品中。在这些产品中加入碘化物可以使其对牙周病原体更有效,也有助于防止这些病原体通过唾液在人与人之间传播。