Tomita Y, Zhu X, Ochiai K, Namiki Y, Okada T, Ikemi T, Fukushima K
Department of Microbiology, Nihon University School of Dentistry at Matsudo, Chiba, Japan.
FEMS Microbiol Lett. 1996 Dec 15;145(3):427-32. doi: 10.1111/j.1574-6968.1996.tb08611.x.
We previously established murine hybridomas producing a monoclonal antibody monospecific against three glucosyltransferases (I, SI and S) of Streptococcus mutans which contribute to dental caries formation. Here, we developed a new immunochemical technique (cross-dot system) with which individual levels of glucosyltransferases expressed by S. mutans can be evaluated. We also examined glucosyltransferase production and in vitro artificial plaque formation by a reference strain and several clinical isolates of S. mutans. The findings indicate that the levels of glucosyltransferases produced greatly vary with the cells and the culture medium, and that the cells producing high levels of both glucosyltransferase-SI and glucosyltransferase-I enzymes may possess high in vitro artificial plaque forming ability. We suggest that the cross-dot system will be useful for estimating the cariogenic potential of S. mutans isolates.
我们之前建立了能产生单克隆抗体的小鼠杂交瘤,该单克隆抗体对变形链球菌的三种葡糖基转移酶(I、SI和S)具有单特异性,这三种酶在龋齿形成过程中发挥作用。在此,我们开发了一种新的免疫化学技术(交叉点系统),利用该技术可以评估变形链球菌表达的葡糖基转移酶的个体水平。我们还检测了变形链球菌参考菌株和几株临床分离株的葡糖基转移酶产生情况以及体外人工菌斑形成情况。研究结果表明,所产生的葡糖基转移酶水平因细胞和培养基的不同而有很大差异,并且同时产生高水平葡糖基转移酶-SI和葡糖基转移酶-I的细胞可能具有较高的体外人工菌斑形成能力。我们认为交叉点系统将有助于评估变形链球菌分离株的致龋潜力。