Er:YAG激光对人牙釉质CaF2形成的影响及其抗龋作用的体外研究

A C B Delbem, J A Cury, C K Nakassima, V G Gouveia, L H Theodoro
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引用次数: 64

摘要

目的:研究Er:YAG激光对磷酸氟化剂(APF)应用后CaF(2)形成的影响及其对人牙釉质抗龋作用的影响。背景资料:Er:YAG激光被设计用来促进牙釉质的消融。然而,利用这种能量来提高牙釉质抗龋能力的可能性几乎没有被探索过,而且它与氟化物的使用也没有相互作用。材料与方法:将120块牙釉质分成4组,每组30块:(1)C组,对照组;(2) Er:YAG,激光;(3) APF;(4) Er:YAG+APF。其中,80个区块提交pH循环14天。在另外40个街区,在骑行前测量氟化物(CaF(2))。pH循环后,还测定了表面显微硬度(SMH)、截面显微硬度(转换为矿物含量% vol. min)和循环后(40块)的氟化物。结果:各组SMH均降低。对照组下降幅度最大,Er:YAG+APF下降幅度最小(p < 0.05)。APF组与Er:YAG组结果相同(p > 0.05)。10、20和40 μ m深度的矿物质含量在对照组和Er:YAG组较低,在APF组和Er:YAG+APF组较高。与Er:YAG+APF组相比,APF组pH循环前沉积的CaF(2) (microgF/cm(2))更高。对照组和Er:YAG组最低(p > 0.05)。结论:Er:YAG激光可影响CaF(2)在牙釉质上的沉积,具有表面抗龋作用,但不具有深度防龋作用。
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Effect of Er:YAG laser on CaF2 formation and its anti-cariogenic action on human enamel: an in vitro study.

Objective: The objective of this study was to evaluate the effect of Er:YAG laser on the formation of CaF(2), after the application of acidulated phosphate fluoride (APF), and its influence on the anti-cariogenic action in human dental enamel.

Background data: Er:YAG laser was designed to promote ablation of the enamel. However, the possibility of using this energy to increase the enamel's resistance to caries has hardly been explored, and neither has its interaction with the use of fluorides.

Materials and methods: One hundred and twenty blocks of enamel were allocated to four groups of 30 blocks each: (1) C, control group; (2) Er:YAG, laser; (3) APF; and (4) Er:YAG+APF. Of these, 80 blocks were submitted to pH cycling for 14 days. In the other 40 blocks, fluoride (CaF(2)) was measured before cycling. After pH cycling, surface microhardness (SMH), microhardness in cross-section (converted to mineral contents % vol. min.), and fluoride after cycling (40 blocks) were also determined.

Results: SMH decreased in all groups. The control group showed the highest decrease, and Er:YAG+APF showed the lowest decrease (p < 0.05). Groups APF and Er:YAG showed the same results (p > 0.05). Mineral content at depths 10, 20, and 40 microm was lower in the control and Er:YAG groups, and higher in groups APF and Er:YAG+APF. CaF(2) (microgF/cm(2)) deposited before pH cycling was higher in the APF group when compared to the Er:YAG+APF group. Control and Er:YAG groups showed the lowest values (p > 0.05).

Conclusion: It was concluded that Er:YAG laser influenced the deposition of CaF(2) on the enamel and showed a superficial anti-cariogenic action, but not in depth.

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