In vitro evaluation of the impact of a bioceramic root canal sealer on the mechanical properties of tooth roots

IF 3.4 3区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Journal of Dental Sciences Pub Date : 2024-07-01 DOI:10.1016/j.jds.2023.10.013
Ya-Hui Wang, Si-Yi Liu, Yan-Mei Dong
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Abstract

Bacground/purpose

Endodontically treated teeth are more prone to vertical root fracture with the mechanical property changes to some extent during root canal treatment. This study aimed to investigate the effects of a bioceramic sealer on the mechanical properties of tooth roots.

Materials and methods

Dentin discs were dried by two different methods (ethanol drying and paper points drying) and then filled with a BC sealer named iRoot SP. SEM and EDS were used to analyze the newly formed minerals in dentin tubules. Elastic modulus and hardness of the secondary dentin in areas proximal to the primary dentin (PD-SD) and areas proximal to canal or iRoot SP (SD-C/SD-iRoot SP) were measured using nanoindentation technique. The compressive strength of roots filled with iRoot SP were tested by compressive loading test.

Results

(1) Penetration and mineralization: Paper points drying was more conducive to iRoot SP adhesion, spreading and penetration into the dentin tubules than 95% ethanol drying. (2) Micromechanical properties: After filling root canal with iRoot SP, the elastic modulus and hardness of SD-iRoot SP were higher than those of PD-SD (P = 0.001 and P = 0.000). (3) Fracture resistance: The compressive strength of the roots filled with iRoot SP was not significantly different from that of the roots unprepared and unfilled (P = 0.957), but was higher than that of the roots prepared and unfilled (P = 0.009).

Conclusion

Excessive drying (95% ethanol drying method) is not conducive to the penetration and mineralization of the BC sealer iRoot SP into dentin tubules. The good bioactivity of iRoot SP was responsible for increasing the elastic modulus and hardness of dentin, which strengthened the prepared roots.

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体外评估生物陶瓷根管封闭剂对牙根机械性能的影响
背景/目的根管治疗的牙齿更容易发生垂直根折,在根管治疗过程中牙根的机械性能会发生一定程度的变化。本研究旨在探讨生物陶瓷封闭剂对牙根机械性能的影响。材料和方法用两种不同的方法(乙醇烘干和纸点烘干)烘干牙本质圆片,然后填充一种名为 iRoot SP 的生物陶瓷封闭剂。使用 SEM 和 EDS 分析牙本质小管中新形成的矿物质。使用纳米压痕技术测量了主牙本质近端区域(PD-SD)和根管或 iRoot SP 近端区域(SD-C/SD-iRoot SP)次生牙本质的弹性模量和硬度。结果(1)渗透和矿化:纸点干燥比 95% 乙醇干燥更有利于 iRoot SP 黏附、扩散和渗透到牙本质小管中。(2)微机械性能:用 iRoot SP 填充根管后,SD-iRoot SP 的弹性模量和硬度均高于 PD-SD (P = 0.001 和 P = 0.000)。(3) 抗折性:结论过度干燥(95% 乙醇干燥法)不利于 BC 封闭剂 iRoot SP 在牙本质小管中的渗透和矿化。iRoot SP 良好的生物活性提高了牙本质的弹性模量和硬度,从而强化了制备好的牙根。
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来源期刊
Journal of Dental Sciences
Journal of Dental Sciences 医学-牙科与口腔外科
CiteScore
5.10
自引率
14.30%
发文量
348
审稿时长
6 days
期刊介绍: he Journal of Dental Sciences (JDS), published quarterly, is the official and open access publication of the Association for Dental Sciences of the Republic of China (ADS-ROC). The precedent journal of the JDS is the Chinese Dental Journal (CDJ) which had already been covered by MEDLINE in 1988. As the CDJ continued to prove its importance in the region, the ADS-ROC decided to move to the international community by publishing an English journal. Hence, the birth of the JDS in 2006. The JDS is indexed in the SCI Expanded since 2008. It is also indexed in Scopus, and EMCare, ScienceDirect, SIIC Data Bases. The topics covered by the JDS include all fields of basic and clinical dentistry. Some manuscripts focusing on the study of certain endemic diseases such as dental caries and periodontal diseases in particular regions of any country as well as oral pre-cancers, oral cancers, and oral submucous fibrosis related to betel nut chewing habit are also considered for publication. Besides, the JDS also publishes articles about the efficacy of a new treatment modality on oral verrucous hyperplasia or early oral squamous cell carcinoma.
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