Department of Restorative Dentistry - Endodontics, Piracicaba Dental School, University of Campinas (Unicamp), Av Limeira 901, Piracicaba, SP CEP, 13414-903, Brazil.
Department of Biosciences - Pharmacology, Anesthesiology and Therapeutics, University of Campinas (Unicamp), Piracicaba, SP, Brazil.
Clin Oral Investig. 2023 May;27(5):2221-2234. doi: 10.1007/s00784-023-04957-9. Epub 2023 Mar 28.
To evaluate the biocompatibility, physical and chemical properties of three pre-mixed calcium silicate-based sealers and an epoxy resin-based material were assessed. Pre-mixed sealers supposedly obtain water from the root canal moist to hydrate and set.
Polyethylene tubes were filled with the materials Bio-C Sealer Ion+, Bio-C Sealer, EndoSequence BC Sealer and AH Plus Jet, or left empty and surgically implanted in the subcutaneous tissue of Wistar rats. The animals were euthanised and the tubes and tissue were removed for histological analysis and scanning electron microscopy (SEM) coupled with energy-dispersive spectrometry (EDS). Materials' surface chemical characterisation was assessed using Raman spectroscopy and SEM/EDS. Flow, setting time (in two conditions), solubility, radiopacity and pH were also analysed. ANOVA and Bonferroni correction were performed for comparisons (P < 0.05).
Inflammatory response observed in the tissues subsided from 7 to 30 days. Tungsten migration could be detected in the surrounding tissue following AH Plus Jet implantation. All calcium silicate-based sealers exhibited zirconium oxide (radiopacifier) and tricalcium silicate peaks before and after implantation. All materials exhibited flow values above 17 mm. An approximately tenfold difference was observed between the plaster- and metal-mould setting times of the calcium silicate cements indicating its sensitivity to moist variations and solubility above 8% was also observed for these materials.
Pre-mixed materials exhibited variable setting time and solubility with a decreasing inflammatory response.
The variable moist-dependant setting time with high solubility poses a concern for the clinical use of these pre-mixed sealers.
评估三种预先混合的硅酸钙基密封剂和一种环氧树脂基材料的生物相容性、物理和化学性质。预先混合的密封剂据称会从根管中吸收水分以水化和凝固。
将聚乙烯管填充有 Bio-C Sealer Ion+、Bio-C Sealer、EndoSequence BC Sealer 和 AH Plus Jet 材料,或留空并进行手术植入 Wistar 大鼠的皮下组织。处死动物后,取出管和组织进行组织学分析和扫描电子显微镜(SEM)结合能谱分析(EDS)。使用拉曼光谱和 SEM/EDS 评估材料表面化学特性。还分析了流动性、凝固时间(两种条件)、溶解度、射线不透性和 pH 值。采用 ANOVA 和 Bonferroni 校正进行比较(P < 0.05)。
组织中的炎症反应从第 7 天到第 30 天消退。植入 AH Plus Jet 后,可在周围组织中检测到钨迁移。所有硅酸钙基密封剂在植入前后均显示氧化锆(射线不透射剂)和硅酸三钙峰。所有材料的流动值均高于 17mm。在石膏模和金属模的钙硅水泥凝固时间之间观察到大约十倍的差异,表明其对湿度变化敏感,并且这些材料的溶解度也高于 8%。
预先混合的材料表现出可变的凝固时间和溶解度,炎症反应逐渐减弱。
这些预先混合的密封剂的可变湿度依赖性凝固时间和高溶解度对临床使用构成了关注。