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用磷酸钙和胶原蛋白交联生物改性的脱矿牙本质的飞行时间二次离子质谱分析:对V类粘结修复体边缘适应性的影响

ToF-SIMS Analysis of Demineralized Dentin Biomodified with Calcium Phosphate and Collagen Crosslinking: Effect on Marginal Adaptation of Class V Adhesive Restorations.

作者信息

Betancourt Francisco, Kiss Andràs, Krejci Ivo, Bortolotto Tissiana

机构信息

Division of Cariology and Endodontology, Faculty of Medicine, University Clinic of Dental Medicine, University of Geneva, 1205 Geneva, Switzerland.

Department of Quantum Matter Physics (DQMP), Faculty of Sciences, Section of Physics, University of Geneva, 1205 Geneva, Switzerland.

出版信息

Materials (Basel). 2021 Aug 12;14(16):4535. doi: 10.3390/ma14164535.

Abstract

This study aimed to assess the effect of biomodification before adhesive procedures on the tooth-restoration interface of class V restorations located in caries-simulated vs. sound dentin, and the quality of dentin surface by time-of-flight secondary ion mass spectrometry (ToF-SIMS). Class V cavities located on cervical dentin were prepared on the buccal surfaces of extracted human molars under the simulation of intratubular fluid flow. Two dentin types, i.e., sound and demineralized by formic-acid, were biomodified with 1% riboflavin and calcium phosphate (CaP) prior to the application of a universal adhesive (Clearfil Universal Bond) in etch and rinse or self-etch mode, and a conventional micro hybrid composite (Clearfil APX). Restorations were subjected to thermo mechanical fatigue test and percentages of continuous margins (% CM) before/after fatigue were compared. Bio modification of dentin surfaces at the molecular level was analyzed by Time-of-Flight Secondary Mass Spectometry (ToF-SIMS). % CM were still significantly higher in tooth-restoration interfaces on sound dentin. Meanwhile, biomodification with riboflavin and CaP had no detrimental effect on adhesion and in carious dentin, it improved the % CM both before and after loading. Etching carious dentin with phosphoric acid provided with the lowest results, leading even to restoration loss. The presence of molecule fragments of riboflavin and CaP were detected by ToF-SIMS, evidencing dentin biomodification. The adhesive interface involving carious dentin could be improved by the use of a collagen crosslinker and CaP prior to adhesive procedures.

摘要

本研究旨在通过飞行时间二次离子质谱法(ToF-SIMS)评估粘结程序前的生物改性对位于模拟龋坏与健康牙本质中的V类修复体的牙齿-修复体界面的影响,以及牙本质表面的质量。在模拟管内液流的条件下,在拔除的人类磨牙颊面制备位于颈部牙本质的V类洞。在应用通用粘结剂(Clearfil Universal Bond)进行酸蚀冲洗或自酸蚀模式以及传统微混合复合树脂(Clearfil APX)之前,用1%核黄素和磷酸钙(CaP)对两种牙本质类型,即健康牙本质和经甲酸脱矿的牙本质进行生物改性。修复体进行热机械疲劳测试,并比较疲劳前后连续边缘的百分比(%CM)。通过飞行时间二次质谱法(ToF-SIMS)分析牙本质表面在分子水平上的生物改性。健康牙本质上的牙齿-修复体界面的%CM仍然显著更高。同时,核黄素和CaP生物改性对粘结没有不利影响,在龋坏牙本质中,它改善了加载前后的%CM。用磷酸酸蚀龋坏牙本质的结果最低,甚至导致修复体脱落。通过ToF-SIMS检测到核黄素和CaP的分子片段的存在,证明了牙本质生物改性。在粘结程序之前使用胶原交联剂和CaP可以改善涉及龋坏牙本质的粘结界面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3533/8398264/d0ebb105b455/materials-14-04535-g001.jpg

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