[氟+镧两步法治疗乳牙釉质不溶化]。

M Kubota
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摘要

如Fujiwara, Negishi, Miyagi等人先前报道的那样,通过酸化磷酸氟和氯化镧溶液的两步处理(F-La处理),牙齿表面的耐酸性得到加强,从而在其表面形成非晶体氟化镧。本研究旨在检验该疗法的一些临床应用。研究了F-La对提取的人乳牙本质的耐酸效果及处理的实际情况。在酸溶解度试验前后用电子探针x射线微量分析仪进行分析。结果表明:1)氟- la处理使乳牙本质的酸溶解度降至未处理的1 / 3左右,与氟- la处理和氟化二胺银处理相比降至2 / 3左右。2) F-La处理时间为3 ~ 5分钟,La处理时间为0.5 ~ 1.0%。3)与应用于牙釉质相比,在处理之前不需要蚀刻程序。4)氟和镧在这种处理下可穿透牙本质表面约10微米。即使在酸溶性测试之后,仍然有足够数量的化学物质保留下来,从而保护牙齿物质。5)乳牙本质的酸溶解度高于乳牙釉质。然而,经F-La处理后,前者比后者减少得更明显。根据这些实验结果,可以证实乳牙本质的化学反应性高于乳牙釉质。
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[Insolubilization of deciduous tooth enamel by the two-step method with fluoride and lanthanum treatment].

The acid-resistance of the tooth surface is strengthened to form noncrystal lanthanum fluoride on its surface by the two-step treatment (F-La treatment) with acidulated-phosphate fluoride and lanthanum chloride solutions as previously reported by Fujiwara, Negishi, Miyagi et al. This study has been made to examine some clinical applications of the treatment. The acid-resistance effect and the actual condition of the F-La treatment were investigated on the extracted human deciduous dentin. Analysis was made using the electron probe X-ray microanalyzer before and after the acid solubility test. The results were as follows: 1) With F-La treatment, the acid-solubility of deciduous tooth dentin was reduced to about one-third of that without treatment, and to about two-third compared both with F-treatment and with diamine silver fluoride application. 2) Applications of 3 to 5 minutes with F and 3 minutes with 0.5 to 1.0% La sufficed for this F-La treatment. 3) An etching procedure was not necessary previous to the treatment in contrast with the application to the enamel. 4) Fluorine and lanthanum penetrated up to approximately 10 microns from the dentin surface with this treatment. Even after the acid-solubility test, a sufficient quantity of the stated chemicals remained, thus protecting the tooth substance. 5) The acid-solubility of the deciduous dentin was higher than that of the deciduous enamel. After the F-La treatment, however, the former diminished more markedly than the latter. Based on these experimental results, one can confirm the fact the chemical reactivity of the deciduous dentin is higher than that of the deciduous enamel.

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