Antibacterial Effect and Physical-Mechanical Properties of Temporary Restorative Material Containing Antibacterial Agents.

International Scholarly Research Notices Pub Date : 2015-12-29 eCollection Date: 2015-01-01 DOI:10.1155/2015/697197
Amanda Mahammad Mushashe, Carla Castiglia Gonzaga, Paulo Henrique Tomazinho, Leonardo Fernandes da Cunha, Denise Piotto Leonardi, Janes Francio Pissaia, Gisele Maria Correr
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引用次数: 4

Abstract

Introduction. For the maintenance of the aseptic chain created during the treatment the coronal sealing becomes paramount. Aim. Evaluating the antibacterial effect and the physical-mechanical properties of a temporary restorative material containing different antibacterial agents. Material and Methods. Two antibacterial agents (triclosan and chloramine T) were manually added to a temporary restorative material used as base (Coltosol). The antibacterial action of the material was analyzed using the agar diffusion method, in pure cultures of Escherichia coli (ATCC BAA-2336) and Staphylococcus aureus (ATCC 11632) and mixed culture of saliva collection. The microleakage rate was analyzed using bovine teeth, previously restored with the materials, and submitted to thermocycling, in a solution of 0.5% methylene blue, for a period of 24 hours. The physical and mechanical properties of the materials analyzed were setting time, water sorption, solubility, and compression strength. Results. No marginal leakage was observed for all groups. There was no statistical significant difference in antimicrobial activity, setting time, water sorption, solubility, and compression strength among the materials. Conclusion. The addition of antibacterial agents on a temporary restorative material did not optimize the antibacterial ability of the material and also did not change its physical-mechanical properties.

含抗菌剂临时修复材料的抗菌效果及物理力学性能。
介绍。为了维持在治疗过程中形成的无菌链,冠状密封变得至关重要。的目标。评价含不同抗菌剂的临时修复材料的抗菌效果和物理力学性能。材料和方法。将两种抗菌剂(三氯生和氯胺T)人工添加到临时修复材料(Coltosol)中作为基础。采用琼脂扩散法,对大肠杆菌(ATCC BAA-2336)和金黄色葡萄球菌(ATCC 11632)纯培养物和唾液标本混合培养物的抑菌作用进行了分析。微泄漏率分析使用牛牙齿,之前用材料修复,并提交热循环,在0.5%亚甲基蓝的溶液中,24小时。分析了材料的物理力学性能,包括凝固时间、吸水性、溶解度和抗压强度。结果。所有组均未观察到边际渗漏。不同材料的抗菌活性、凝固时间、吸水性、溶解度、抗压强度差异无统计学意义。结论。在临时修复材料上添加抗菌剂并没有优化材料的抗菌能力,也没有改变材料的物理力学性能。
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