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不同作用时间后四氟化钛溶液对牙根表面的体外作用效果。

Effects of TiF4 solutions on root surfaces in vitro after different application periods.

作者信息

Skartveit L, Tveit A B, Tøtdal B, Selvig K A

机构信息

Department of Dental Research, School of Dentistry, University of Bergen, Norway.

出版信息

Acta Odontol Scand. 1989 Feb;47(1):25-30. doi: 10.3109/00016358909004796.

Abstract

Topical application of aqueous solutions of TiF4 to root surfaces has been shown to result in a rapid uptake of fluoride. The purpose of this study was to assess whether the application period and/or the ionic strength of the TiF4 solution can be reduced without a corresponding reduction in the fluoride uptake. Root halves from human teeth were exposed to (a) 1% TiF4 for 10 sec and 1, 2, and 4 min, and (b) 3.4% TiF4 for the same application periods. Root surface areas protected by nail polish served as controls. Transverse ground sections through the treated root surface areas were then prepared and analyzed for F by electron microprobe analysis. Most treated specimens showed F concentrations in the 0.60-1.94% range, whereas control surfaces contained less than 0.30%. Similar F concentrations were found in the surfaces treated with the two solutions. Reducing the application period resulted in a shallower penetration of F into the hard tissue but only a slight reduction of the F concentration in the surface layer. High concentrations of Ti were found on the surface of all treated specimens. This shows that both the application period and the ionic strength of TiF4 solutions can be considerably reduced and still enable a high uptake of fluoride. The results indicate that TiF4 may be an efficacious agent for F application to root surfaces under clinical conditions.

摘要

已表明将TiF4水溶液局部应用于牙根表面会导致氟的快速摄取。本研究的目的是评估TiF4溶液的应用时间和/或离子强度是否可以降低,而不会相应降低氟的摄取量。将人牙的半根暴露于(a)1%的TiF4中10秒、1分钟、2分钟和4分钟,以及(b)3.4%的TiF4中相同的应用时间。用指甲油保护的牙根表面积作为对照。然后制备穿过处理过的牙根表面区域的横向磨片,并通过电子微探针分析进行氟分析。大多数处理过的标本显示氟浓度在0.60 - 1.94%范围内,而对照表面的氟浓度低于0.30%。在用两种溶液处理的表面中发现了相似的氟浓度。缩短应用时间会导致氟向硬组织的渗透变浅,但仅使表层氟浓度略有降低。在所有处理过的标本表面都发现了高浓度的钛。这表明TiF4溶液的应用时间和离子强度都可以大幅降低,并且仍然能够实现高氟摄取。结果表明,TiF4可能是临床条件下用于牙根表面氟应用的有效试剂。

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