Pearce E I, Sissons C H
J Dent Res. 1987 Oct;66(10):1518-22. doi: 10.1177/00220345870660100101.
We have investigated the feasibility of incorporating Sr into dental plaque by means of an enzyme-dependent system known to increase Ca, P, and F levels in plaque. A solution containing Ca (20 mmol/L), P (12 mmol/L), MFP (4.7 mmol/L), F (0.3 mmol/L), and urea (500 mmol/L) was modified by equimolar replacement of Ca with 1, 2, 5, and 10 mmol/L Sr. Thin films of human salivary sediment incubated in these solutions showed increasing levels of acid-extractable Sr as the solution Sr increased. When the concentration exceeded 2 mmol/L, deposition of Ca, P, and F was reduced. In artificial plaque, grown on bovine enamel, from mixed human salivary organisms and treated with the solution containing 2 mmol Sr/L, there was a slightly smaller uptake of Ca, P, and Sr, but a greater uptake of F than in sediment treated with the same solution. Natural human plaque treated 12 times in vivo over three days with this solution (in the form of a mouthrinse) also showed substantial increases (from five- to 26-fold) in the concentrations of all four ions. Absolute levels of Ca, P, F, and especially Sr were, however, lower than those in the artificial plaque samples. (Ca + Sr)/P ratios suggested apatite deposition, and the correlation between amounts of Ca and Sr deposited in natural plaque samples suggested that Sr, like F, is structurally incorporated into this apatite. Fluctuations in the pH of natural plaque may promote apatite crystal maturation, causing a slow loss of Sr.(ABSTRACT TRUNCATED AT 250 WORDS)
我们通过一种已知能提高牙菌斑中钙、磷和氟含量的酶依赖系统,研究了将锶纳入牙菌斑的可行性。一种含有钙(20毫摩尔/升)、磷(12毫摩尔/升)、MFP(4.7毫摩尔/升)、氟(0.3毫摩尔/升)和尿素(500毫摩尔/升)的溶液,通过用1、2、5和10毫摩尔/升的锶等摩尔替代钙进行了改性。在这些溶液中孵育的人唾液沉淀物薄膜显示,随着溶液中锶含量的增加,酸可提取锶的含量也在增加。当浓度超过2毫摩尔/升时,钙、磷和氟的沉积减少。在牛牙釉质上生长的、由混合的人类唾液微生物形成的人工牙菌斑中,用含有2毫摩尔/升锶的溶液处理后,钙、磷和锶的摄取量略少,但氟的摄取量比用相同溶液处理的沉淀物中的摄取量更大。在三天内用该溶液(漱口水形式)在体内处理12次的天然人类牙菌斑,所有四种离子的浓度也大幅增加(从五倍到26倍)。然而,钙、磷、氟尤其是锶的绝对含量低于人工牙菌斑样本中的含量。(钙 + 锶)/磷的比例表明有磷灰石沉积,天然牙菌斑样本中钙和锶沉积量之间的相关性表明,锶与氟一样,在结构上被纳入了这种磷灰石中。天然牙菌斑pH值的波动可能会促进磷灰石晶体的成熟,导致锶的缓慢流失。(摘要截于250字)