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锌掺杂牙科粘合剂的生物活性。

Bioactivity of zinc-doped dental adhesives.

作者信息

Osorio Raquel, Cabello Inmaculada, Toledano Manuel

机构信息

Department of Dental Materials, School of Dentistry, Campus de Cartuja s/n, University of Granada, E-18071 Granada, Spain.

Department of Dental Materials, School of Dentistry, Campus de Cartuja s/n, University of Granada, E-18071 Granada, Spain.

出版信息

J Dent. 2014 Apr;42(4):403-12. doi: 10.1016/j.jdent.2013.12.006. Epub 2013 Dec 25.

Abstract

UNLABELLED

Design of restorative materials should be focused on promoting not only adhesion but also dentine self-repair processes.

OBJECTIVE

To ascertain if ZnO and ZnCl2-doped resins are materials able to induce calcium (Ca) and phosphate (P) deposition.

METHODS

48 resin disks were prepared with the following materials: (1) single bond -3M/ESPE-, (2) single bond+ZnO particles 20wt% and (3) single bond+ZnCl2 2wt%. Specimens were polymerised and polished. Bioactivity was tested through a simulated body fluid solution (SBFS) immersion test. At time 24h, 7 d and 21 d surfaces were analyzed by stereomicroscope, high resolution scanning electron microscope (HRSEM), energy-dispersive analysis (EDX), confocal laser Raman, and X-ray diffraction (XRD) for morphological and chemical composition.

RESULTS

Under the stereomicroscope, crystal formations were encountered in both zinc-doped resin adhesives after 7 d of immersion. It was, detected by EDX, that the ZnO-doped resin produced Zn, Ca and P deposition (globular formations were observed by HRSEM) after 7 d. Zn and P crystals were detected by HRSEM and EDX in the experimental ZnCl2-doped resin after 7 d and 21 d. Hopeite formation was identified by Raman on both Zn-doped resins. Single bond did not produce mineral or crystal precipitation.

CONCLUSIONS

ZnO-doped resin induced Ca and P deposition after SBFS immersion. On ZnCl2-doped resin hopeite formation was detected, if this hopeite may be further converted into apatite, after SBFS immersion, remains to be ascertained.

CLINICAL SIGNIFICANCE

Bonding with ZnO-doped resin may facilitate incorporation of Ca and P at the interfacial bonding zone.

摘要

未标注

修复材料的设计不仅应注重促进黏附,还应关注牙本质自我修复过程。

目的

确定掺杂氧化锌(ZnO)和氯化锌(ZnCl2)的树脂是否能够诱导钙(Ca)和磷(P)沉积。

方法

用以下材料制备48个树脂盘:(1)单组分粘结剂 -3M/ESPE-,(2)单组分粘结剂 + 20wt% ZnO颗粒,(3)单组分粘结剂 + 2wt% ZnCl2。将标本聚合并抛光。通过模拟体液溶液(SBFS)浸泡试验测试生物活性。在24小时、7天和21天时,通过体视显微镜、高分辨率扫描电子显微镜(HRSEM)、能量色散分析(EDX)、共聚焦激光拉曼光谱和X射线衍射(XRD)对表面进行形态和化学成分分析。

结果

在体视显微镜下,浸泡7天后,两种掺杂锌的树脂粘结剂中均出现晶体形成。通过EDX检测发现,掺杂ZnO的树脂在7天后产生了Zn、Ca和P沉积(HRSEM观察到球状结构)。在7天和21天后,通过HRSEM和EDX在实验性掺杂ZnCl2的树脂中检测到Zn和P晶体。通过拉曼光谱在两种掺杂锌的树脂中均鉴定出磷锌矿的形成。单组分粘结剂未产生矿物质或晶体沉淀。

结论

掺杂ZnO的树脂在SBFS浸泡后诱导了Ca和P沉积。在掺杂ZnCl2的树脂中检测到磷锌矿的形成,这种磷锌矿在SBFS浸泡后是否能进一步转化为磷灰石,还有待确定。

临床意义

与掺杂ZnO的树脂粘结可能有助于在界面粘结区结合Ca和P。

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