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Rapidly-Dissolving Silver-Containing Bioactive Glasses for Cariostatic Applications

机译:快速溶解的含银生物活性玻璃可用于防龋应用

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摘要

A novel bioactive glass series containing incremental amounts of silver oxide was synthesized, ground down, and subsequently incorporated into a dentifrice for the purpose of reducing the incidence of dental caries and lesion formation. Three glasses were synthesized using the melt quench route: Si-Control (70SiO2–12CaO–3P2O5–15Na2O, mol %), Si-02 and Si-05, where 0.2 and 0.5 mol % Ag2O were substituted, respectively, for SiO2 in Si-Control. The glasses were then ground, sieved, characterized, and dissolved in Tris buffer solution (pH = 7.30) for 6, 12, and 24 h, with the pH of the resultant solution being recorded and the ions that were released into solution quantified. Samples of each glass were subsequently embedded into a non-fluoridated, commercially available toothpaste which was then used to brush resin-mounted lamb molars which, up to the point of testing, had been stored in a 1.0 M HCl solution. Knoop microhardness measurements of the molars were recorded before and after brushing to determine the presence of remineralization on the surface of the teeth (surface hardness loss of 37%, 35%, and 34% for Si-Control, Si-02 and Si-05, respectively, after 24 h). Four oral cavity bacterial strains were isolated through swabs of the inner cheek, gums, and teeth surfaces of three volunteers, and placed on agar discs. Of each glass, 0.5 g was placed onto the discs, and the resultant inhibition zones were measured after 6, 12, and 24 h. Si-05 performed better than Si-02 on two strains after 24 h, while exhibiting similar behavior for the remaining two strains after 24 h; the largest inhibition zone measured was 2.8 mm, for Si-05 after 12 h. Si-Control exhibited no antibacterial effect at any time point, providing evidence for the role of silver oxide as the antibacterial component of these glasses.
机译:合成了一种新型的生物活性玻璃系列,其中含有递增量的氧化银,将其磨碎,然后掺入到洁齿剂中,以减少龋齿和病变的形成。使用熔融淬火路线合成了三块玻璃:Si-Control(70SiO2–12CaO–3P2O5–15Na2O,摩尔%),Si-02和Si-05,其中分别用0.2和0.5摩尔%Ag2O代替了Si中的SiO2 -控制。然后将玻璃磨碎,过筛,定性并溶解在Tris缓冲溶液(pH = 7.30)中6、12和24小时,记录所得溶液的pH值,并对释放到溶液中的离子进行定量。随后将每种玻璃的样品包埋在非氟化的市售牙膏中,然后将其用于刷涂树脂的羔羊磨牙,直到测试点为止,该磨牙已存储在1.0 M HCl溶液中。刷牙前后记录磨牙的努氏显微硬度测量值,以确定牙齿表面是否存在矿化现象(Si-Control,Si-02和Si-05的表面硬度损失分别为37%,35%和34%)分别在24小时后)。通过三名志愿者的内颊拭子,牙龈和牙齿表面的拭子分离出四种口腔细菌菌株,并将其置于琼脂盘上。在每个玻璃杯中,将0.5 g置于圆盘上,并在6、12和24小时后测量所得的抑制区。在24小时后,Si-05在两个菌株上的表现优于Si-02,而在24小时后,其余两个菌株表现出相似的行为。在12小时后,对于Si-05,测得的最大抑制区为2.8 mm。 Si-Control在任何时候都没有表现出抗菌作用,为氧化银作为这些玻璃的抗菌成分提供了证据。

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