Braun Andreas, Berthold Michael, Buttler Patricia, Glock Joanna, Wenzler Johannes-Simon
Department of Operative Dentistry, Periodontology and Preventive Dentistry, RWTH Aachen University Hospital, Pauwelsstrasse 30, 52074 Aachen, Germany.
J Funct Biomater. 2023 Mar 23;14(4):175. doi: 10.3390/jfb14040175.
Optimizing the interface between biomaterials and dental hard tissues can prevent leakage of bacteria or inflammatory mediators into periapical tissues and thus avoid alveolar bone inflammation. In this study, an analysis system for testing the periodontal-endodontic interface using gas leakage and subsequent mass spectrometry was developed and validated using the roots of 15 single-rooted teeth in four groups: (I) roots without root canal filling, (II) roots with an inserted gutta-percha post without sealer, (III) roots with gutta-percha post and sealer, (IV) roots filled with sealer only, and (V) adhesively covered roots. Helium was used as the test gas, and its leakage rate was found by measuring the rising ion current using mass spectrometry. This system made it possible to differentiate between the leakage rates of tooth specimens with different fillings. Roots without filling showed the highest leakage values ( < 0.05). Specimens with a gutta-percha post without sealer showed statistically significantly higher leakage values than groups with a filling of gutta-percha and sealer or sealer alone ( < 0.05). This study shows that a standardized analysis system can be developed for periodontal-endodontic interfaces to prevent biomaterials and tissue degradation products from affecting the surrounding alveolar bone tissue.
优化生物材料与牙齿硬组织之间的界面可以防止细菌或炎症介质渗入根尖周组织,从而避免牙槽骨炎症。在本研究中,开发了一种利用气体泄漏和后续质谱分析来测试牙周-牙髓界面的分析系统,并使用四组15颗单根牙的牙根进行了验证:(I)未进行根管充填的牙根,(II)插入牙胶桩但未使用封闭剂的牙根,(III)使用牙胶桩和封闭剂的牙根,(IV)仅用封闭剂充填的牙根,以及(V)用粘合剂覆盖的牙根。使用氦气作为测试气体,并通过质谱测量上升的离子电流来确定其泄漏率。该系统能够区分不同充填物的牙齿标本的泄漏率。未充填的牙根显示出最高的泄漏值(<0.05)。未使用封闭剂的牙胶桩标本的泄漏值在统计学上显著高于使用牙胶桩和封闭剂或仅使用封闭剂充填的组(<0.05)。本研究表明,可以开发一种用于牙周-牙髓界面的标准化分析系统,以防止生物材料和组织降解产物影响周围的牙槽骨组织。