Tohoku University Graduate School of Dentistry, Seiryo-machi 4-1, Aoba-ku, Sendai 980-8575, Japan.
J Clin Biochem Nutr. 2012 Jul;51(1):9-14. doi: 10.3164/jcbn.11-105. Epub 2012 Mar 3.
We have developed a new disinfection system for oral hygiene, proving that hydroxyl radicals generated by the photolysis of 1 M hydrogen peroxide could effectively kill oral pathogenic microorganisms. Prior to any clinical testing, the safety of the system especially in terms of the risk of carcinogenicity is examined by reviewing the literature. Previous studies have investigated indirectly the kinds of reactive oxygen species involved in some sort of chemically-induced mutagenicity in vitro by using reactive oxygen species scavengers, suggesting the possible involvement of hydroxyl radicals. Similarly, possible involvement of hydroxyl radicals in some sort of chemically-induced carcinogenicity has been proposed. Notably, it is suggested that the hydroxyl radical can play a role in heavy metal-induced carcinogenicity that requires chronic exposure to the carcinogen. In these cases, hydroxyl radicals produced by Fenton-like reactions may be involved in the carcinogenicity. Meanwhile, potential advantages have been reported on the use of the hydroxyl radical, being included in host immune defense by polymorphonuclear leukocytes, and medical applications such as for cancer treatment and antibiotics. From these, we conclude that there would seem to be little to no risk in using the hydroxyl radical as a disinfectant for short-term treatment of the oral cavity.
我们开发了一种新的口腔卫生消毒系统,证明通过 1M 过氧化氢的光解产生的羟基自由基可以有效杀死口腔致病微生物。在进行任何临床测试之前,通过审查文献来检查该系统的安全性,特别是致癌风险。先前的研究通过使用活性氧清除剂间接研究了某些化学诱导的体外突变中涉及的活性氧种类,表明可能涉及羟基自由基。同样,也提出了羟基自由基可能参与某些化学诱导的致癌性。值得注意的是,据认为,羟基自由基可以在需要长期暴露于致癌物质的重金属诱导的致癌性中发挥作用。在这些情况下,Fenton 样反应产生的羟基自由基可能参与致癌作用。同时,据报道,羟基自由基在宿主免疫防御(多形核白细胞)和医学应用(如癌症治疗和抗生素)中具有潜在优势。由此,我们得出结论,将羟基自由基用作口腔短期治疗的消毒剂似乎几乎没有风险。