Chu Jinpu, Zhang Tieting, He Kexin
College of Stomatology, Zhengzhou University, Nanyang Road 169-10#, Zhengzhou, 453002, China.
College of Stomatology, Guangxi Medical University, Shuangyong Road 10#, Nanning, 530021, China.
BMC Oral Health. 2016 May 11;16(1):54. doi: 10.1186/s12903-016-0212-1.
One promising way of reducing caries is by using sucrose substitutes in food. rubusoside is a prototype sweet substance isolated from the leaves of the plant Rubrus suavissimus S. Lee. (Rosaceae), and is rated sweeter than sucrose. The purpose of this study was to investigate the effects of rubusoside on Streptococcus mutans growth, acidogenicity, and adherence to glass in vitro.
The effects of rubusoside on the growth and glass surface adhering of Streptococcus mutans were investigated by measuring the optical density of the culture at 540 nm with a spectrophotometer. Rubusoside influence on Streptococcus mutans acidogenicity was determined by measuring the pH of the culture. Sucrose, glucose, maltose, fructose and xylitol were designed to compare with rubusoside.
S. mutans growth in the rubusoside-treated group was significantly lower than that in the sucrose, glucose, maltose and fructose groups (p < 0.05) except for xylitol group (p > 0.05). Sucrose-treated S. mutans exhibited the highest adherence to glass, and rubusoside-treated S. mutans exhibited the lowest. S. mutans adherence to a glass surface and acidogenicity with sucrose were significantly reduced by rubusoside.
Rubusoside may have some potential as a non-cariogenic, non-caloric sweetener.
减少龋齿的一种有前景的方法是在食物中使用蔗糖替代品。甜茶苷是从甜叶悬钩子(蔷薇科)植物的叶子中分离出的一种原型甜味物质,其甜度比蔗糖高。本研究的目的是在体外研究甜茶苷对变形链球菌生长、产酸性和在玻璃上黏附的影响。
通过用分光光度计测量培养物在540nm处的光密度,研究甜茶苷对变形链球菌生长和在玻璃表面黏附的影响。通过测量培养物的pH值来确定甜茶苷对变形链球菌产酸性的影响。设计蔗糖、葡萄糖、麦芽糖、果糖和木糖醇与甜茶苷进行比较。
除木糖醇组外(p>0.05),甜茶苷处理组的变形链球菌生长明显低于蔗糖、葡萄糖、麦芽糖和果糖组(p<0.05)。蔗糖处理的变形链球菌对玻璃的黏附性最高,甜茶苷处理的变形链球菌黏附性最低。甜茶苷显著降低了变形链球菌在玻璃表面的黏附性以及用蔗糖时的产酸性。
甜茶苷作为一种非致龋、无热量的甜味剂可能具有一定潜力。