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新型磷酸钙糊剂进行釉质预处理后,粘结前磨牙对四种人工老化模型的抗力

Resistance of bonded premolars to four artificial ageing models post enamel conditioning with a novel calcium-phosphate paste.

作者信息

Ibrahim Ali I, Al-Hasani Noor R, Thompson Van P, Deb Sanjukta

机构信息

Centre for Oral, Clinical and Translational Sciences, Faculty of Dentistry, Oral & Craniofacial Sciences, King's College London, London, UK.

Department of Orthodontics, College of Dentistry, University of Baghdad, Baghdad, Iraq.

出版信息

J Clin Exp Dent. 2020 Apr 1;12(4):e317-e326. doi: 10.4317/jced.56764. eCollection 2020 Apr.

Abstract

BACKGROUND

This study compares a novel calcium-phosphate etchant paste to conventional 37% phosphoric acid gel for bonding metal and ceramic brackets by evaluating the shear bond strength, remnant adhesive and enamel damage following water storage, acid challenge and fatigue loading.

MATERIAL AND METHODS

Metal and ceramic brackets were bonded to 240 extracted human premolars using two enamel conditioning protocols: conventional 37% phosphoric acid (PA) gel (control), and an acidic calcium-phosphate (CaP) paste. The CaP paste was prepared from β-tricalcium phosphate and monocalcium phosphate monohydrate powders mixed with 37% phosphoric acid solution, and the resulting phase was confirmed using FTIR. The bonded premolars were exposed to four artificial ageing models to examine the shear bond strength (SBS), adhesive remnant index (ARI score), with stereomicroscopic evaluation of enamel damage.

RESULTS

Metal and ceramic control subgroups yielded significantly higher ( < 0.05) SBS (17.1-31.8 MPa) than the CaP subgroups (11.4-23.8 MPa) post all artificial ageing protocols, coupled with higher ARI scores and evidence of enamel damage. In contrast, the CaP subgroups survived all artificial ageing tests by maintaining adequate SBS for clinical performance, with the advantages of leaving unblemished enamel surface and bracket failures at the enamel-adhesive interface.

CONCLUSIONS

Enamel conditioning with acidic CaP pastes attained adequate bond strengths with no or minimal adhesive residue and enamel damage, suggesting a suitable alternative to the conventional PA gel for orthodontic bonding. Enamel etching, calcium phosphate, bracket bond strength, adhesive residue, enamel damage.

摘要

背景

本研究通过评估储水、酸蚀挑战和疲劳加载后的剪切粘结强度、残留粘结剂和釉质损伤,将一种新型磷酸钙蚀刻膏与传统的37%磷酸凝胶用于金属和陶瓷托槽粘结进行比较。

材料与方法

使用两种釉质处理方案将金属和陶瓷托槽粘结到240颗拔除的人类前磨牙上:传统的37%磷酸(PA)凝胶(对照组)和酸性磷酸钙(CaP)糊剂。CaP糊剂由β-磷酸三钙和一水磷酸二氢钙粉末与37%磷酸溶液混合制备,并使用傅里叶变换红外光谱(FTIR)确认所得相。将粘结的前磨牙暴露于四种人工老化模型中,以检查剪切粘结强度(SBS)、粘结剂残留指数(ARI评分),并通过体视显微镜评估釉质损伤。

结果

在所有人工老化方案后,金属和陶瓷对照组亚组的SBS(17.1 - 31.8 MPa)显著高于CaP亚组(11.4 - 23.8 MPa)(P < 0.05),同时ARI评分更高且有釉质损伤的证据。相比之下,CaP亚组通过保持足够的SBS以满足临床性能,在所有人工老化测试中均通过,具有釉质表面无瑕疵以及在釉质 - 粘结剂界面处托槽未脱落的优点。

结论

用酸性CaP糊剂进行釉质处理可获得足够的粘结强度,且无或仅有极少的粘结剂残留和釉质损伤,这表明它是传统PA凝胶用于正畸粘结的合适替代品。釉质蚀刻、磷酸钙、托槽粘结强度、粘结剂残留、釉质损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9218/7195685/ede5d728eda2/jced-12-e317-g001.jpg

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