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酸溶液中 CPP-ACP 改性玻璃离子水门汀的离子释放和物理性能。

Ion release and physical properties of CPP-ACP modified GIC in acid solutions.

机构信息

Oral Health CRC, Melbourne Dental School, The University of Melbourne, Australia.

出版信息

J Dent. 2013 May;41(5):449-54. doi: 10.1016/j.jdent.2013.02.003. Epub 2013 Feb 21.

Abstract

UNLABELLED

A new glass-ionomer cement (GIC) (Fuji VII™ EP) includes 3% (w/w) casein phosphopeptide-amorphous calcium phosphate (CPP-ACP) to enhance ion release.

OBJECTIVES

To assess this new GIC compared with a GIC without CPP-ACP (Fuji VII™) with respect to ion release, changes in surface hardness and in mass under a variety of acidic and neutral conditions.

METHODS

Eighty blocks of Fuji VII™ (F7) and Fuji VII™ EP (F7EP) were subjected to three acidic solutions (lactic and citric acids pH 5.0, hydrochloric acid pH 2.0) and water (pH 6.9) over a three-day period. Ion release, surface hardness and weight measurements were carried out every 24h.

RESULTS

Higher calcium ion release from F7EP was observed under all acidic conditions. Increased inorganic phosphate ion release was observed for F7EP in hydrochloric and citric acids. Fluoride ion release was similar between F7 and F7EP under all conditions but was significantly higher in acids compared with water. After three days there was no significant difference in surface hardness (p>0.05) between the two materials under all conditions except hydrochloric acid. Minimal change in mass was observed for F7 and F7EP in water, lactic and hydrochloric acids, however citric acid caused significantly more mass loss compared with water (p<0.001).

CONCLUSION

Incorporation of 3% (w/w) CPP-ACP into F7 enhanced calcium and phosphate ion release, with no significant change in fluoride ion release and no adverse effects on surface hardness or change in mass.

CLINICAL SIGNIFICANCE STATEMENT

GICs have the potential to release fluoride ions particularly under acidic conditions associated with dental caries and erosion. A new GIC containing CPP-ACP and fluoride releases not only fluoride ions but also calcium and phosphate ions under acidic conditions which should help to inhibit demineralisation associated with caries and erosion.

摘要

目的

评估新的玻璃离子水门汀(GIC)(Fuji VII™ EP)与不含 CPP-ACP 的 GIC(Fuji VII™)相比,在各种酸性和中性条件下的离子释放、表面硬度变化和质量变化。

方法

将 80 块 Fuji VII™(F7)和 Fuji VII™ EP(F7EP)分别浸泡在三种酸性溶液(乳酸和柠檬酸 pH5.0、盐酸 pH2.0)和水中(pH6.9)中 3 天。每 24 小时进行一次离子释放、表面硬度和重量测量。

结果

在所有酸性条件下,F7EP 的钙离子释放量更高。在盐酸和柠檬酸中,F7EP 的无机磷酸盐离子释放量增加。在所有条件下,F7 和 F7EP 的氟离子释放量相似,但在酸中明显高于水。在所有条件下,除了盐酸,F7EP 的表面硬度在 3 天后与 F7 相比没有显著差异(p>0.05)。在水中、乳酸和盐酸中,F7 和 F7EP 的质量变化极小,但柠檬酸导致的质量损失明显高于水(p<0.001)。

结论

将 3%(w/w)CPP-ACP 加入 F7 中增强了钙和磷酸盐离子的释放,氟离子释放没有明显变化,表面硬度或质量变化没有不良影响。

临床意义

GIC 具有在与龋齿和侵蚀相关的酸性条件下释放氟离子的潜力。含有 CPP-ACP 和氟化物的新型 GIC 不仅在酸性条件下释放氟离子,还释放钙和磷酸盐离子,这有助于抑制与龋齿和侵蚀相关的脱矿质。

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