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非甾体抗炎药(NSAIDs)联合对硅酸三钙基水泥理化性能和生物学性能的影响。

Effect of nonsteroidal anti-inflammatory drugs (NSAIDs) association on physicochemical and biological properties of tricalcium silicate-based cement.

机构信息

Department of Dentistry, Endodontics and Dental Materials, Bauru School of Dentistry, USP, Bauru, São Paulo, Brazil.

Department of Oral and Maxillofacial Surgery and Integrated Clinic, Araçatuba Dental School, UNESP, Araçatuba, São Paulo, Brazil.

出版信息

Braz Dent J. 2022 May-Jun;33(3):47-54. doi: 10.1590/0103-6440202204644.

Abstract

The aim of this study was to investigate the physicochemical and biological properties of an experimental tricalcium silicate-based repair cement containing diclofenac sodium (CERD). For the physicochemical test, MTA, Biodentine and CERD were mixed and cement disc were prepared to evaluate the setting time and radiopacity. Root-end cavity were performed in acrylic teeth and filled with cements to analyze the solubility up to 7 days. Polyethylene tubes containing cements were prepared and calcium ions and pH were measured at 3h, 24h, 72h and 15 days. For the biological test, SAOS-2 were cultivated, exposed to cements extracts and cell proliferation were investigated by MTT assay at 6h, 24h and 48h. Polyethylene tubes containing cements were implanted into Wistar rats. After 7 and 30 days, the tubes were removed and processed for histological analyses. Parametric and nonparametric data were performed. No difference was identified in relation to setting time, radiopacity and solubility. Biodentine released more calcium ion than MTA and CERD; however, no difference between MTA and CERD were detected. Alkaline pH was observed for all cements and Biodentine exhibited highest pH. All cements promoted a raise on cell proliferation at 24h and 48h, except CERD at 48h. Biodentine stimulated cell metabolism in relation to MTA and CERD while CERD was more cytotoxic than MTA at 48h. Besides, no difference on both inflammatory response and mineralization ability for all cement were found. CERD demonstrated similar proprieties to others endodontic cements available.

摘要

本研究旨在探讨一种含双氯芬酸钠的实验性硅酸三钙基修复水泥(CERD)的理化和生物学性能。在理化测试中,将 MTA、Biodentine 和 CERD 混合,制备水泥圆盘,以评估其凝固时间和射线不透性。在丙烯酸牙齿上进行根尖腔,并填充水泥,分析 7 天内的溶解度。制备含有水泥的聚乙烯管,在 3h、24h、72h 和 15d 时测量钙离子和 pH 值。将 SAOS-2 细胞培养,暴露于水泥提取物中,通过 MTT 法在 6h、24h 和 48h 时检测细胞增殖。将含有水泥的聚乙烯管植入 Wistar 大鼠体内。7d 和 30d 后,取出管并进行组织学分析。进行了参数和非参数数据检验。在凝固时间、射线不透性和溶解度方面没有差异。Biodentine 释放的钙离子比 MTA 和 CERD 多;然而,MTA 和 CERD 之间没有差异。所有水泥均呈碱性 pH 值,Biodentine 表现出最高的 pH 值。所有水泥在 24h 和 48h 时均促进细胞增殖,除 CERD 在 48h 时外。Biodentine 与 MTA 和 CERD 相比,刺激细胞代谢,而 CERD 在 48h 时比 MTA 更具细胞毒性。此外,所有水泥的炎症反应和矿化能力均无差异。CERD 表现出与其他可用的牙髓水泥相似的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a7b/9645202/e2dc7e9d6eec/1806-4760-bdj-33-03-47-gf1.jpg

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