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通过添加生物活性剂对V类修复材料进行生物改性。

Biomodification of a Class-V Restorative Material by Incorporation of Bioactive Agents.

作者信息

Binaljadm Tahani, Moorehead Robert, Almela Thafar, Franklin Kirsty, Tayebi Lobat, Moharamzadeh Keyvan

机构信息

School of Clinical Dentistry, University of Sheffield, Sheffield S10 2TA, UK.

School of Dentistry, Taibah University, Medina 42353, Saudi Arabia.

出版信息

Dent J (Basel). 2019 Nov 29;7(4):110. doi: 10.3390/dj7040110.

Abstract

Restoring subgingival class-V cavities successfully, demand special biological properties from a restorative material. This study aimed to assess the effects of incorporating bioactive materials to glass ionomer cement (GIC) on its mechanical and biological properties. Hydroxyapatite, chitosan, chondroitin sulphate, bioglass, gelatine and processed bovine dentin were incorporated into a GIC restorative material. Compressive strength, biaxial flexural strength (BFS), hardness, setting and working time measurements were investigated. Biocompatibility of the new materials was assessed using both monolayer cell cultures of normal oral fibroblasts (NOF) and TR146 keratinocytes, and a 3D-tissue engineered human oral mucosa model (3D-OMM) using presto-blue tissue viability assay and histological examination. Significant reduction in the compressive strength and BFS of gelatine-modified discs was observed, while chondroitin sulphate-modified discs had reduced BFS only ( value > 0.05). For hardness, working and setting times, only bioglass caused significant increase in the working time. NOF viability was significantly increased when exposed to GIC-modified with bovine dentine, bioglass and chitosan. Histological examination showed curling and growth of the epithelial layer toward the disc space, except for the GIC modified with gelatine. This study has highlighted the potential for clinical application of the modified GICs with hydroxyapatite, chitosan, bioglass and bovine dentine in subgingival class-V restorations.

摘要

成功修复龈下V类洞需要修复材料具备特殊的生物学特性。本研究旨在评估将生物活性材料加入玻璃离子水门汀(GIC)对其机械性能和生物学性能的影响。将羟基磷灰石、壳聚糖、硫酸软骨素、生物玻璃、明胶和处理过的牛牙本质加入到一种GIC修复材料中。研究了抗压强度、双轴弯曲强度(BFS)、硬度、凝固时间和工作时间的测量。使用正常口腔成纤维细胞(NOF)和TR146角质形成细胞的单层细胞培养以及使用碧萝芷组织活力测定和组织学检查的三维组织工程化人类口腔黏膜模型(3D-OMM)评估新材料的生物相容性。观察到明胶改性圆盘的抗压强度和BFS显著降低,而硫酸软骨素改性圆盘仅BFS降低(P值>0.05)。对于硬度、工作时间和凝固时间,只有生物玻璃使工作时间显著增加。当暴露于用牛牙本质、生物玻璃和壳聚糖改性的GIC时,NOF活力显著增加。组织学检查显示,除了明胶改性的GIC外,上皮层向圆盘间隙卷曲并生长。本研究强调了用羟基磷灰石、壳聚糖、生物玻璃和牛牙本质改性的GIC在龈下V类修复中的临床应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5eb1/6960733/005a9a636e80/dentistry-07-00110-g001.jpg

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