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Antibacterial resin-based composite containing chlorhexidine for dental applications

机译:含氯己定的抗菌树脂基复合材料,用于牙科

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Objeticve. The aim of this study was to develop a composite material with antibacterial activity using MMT loaded with clorhexidine (CHX). For that it was used a BisGMA/TEGDMA matrix and added low concentration of MMT/CHX. The aim was to evaluate the drug release capacity of MMT, and not to provide reinforcement.Methods. Six experimental composites were made with organic matrix of BisGMA/TEGDMA in equal proportions by weight. The composites received organophlizated montmorillonite with or without CHX. The concentrations were 2,5; 5 or 10% by weight. Degree of conversion (DC) was evaluated using FTIR (peak 6165 cm-1; n = 5). Specimens for flexural properties (10x2x1 mm) were immediate tested (24h). Elastic modulus(E) and flexural strength (FS) was measured using the three point bending test (n = 10). Inibition halo was used to test the antibacterial activity against Staphylococcus aureus, Streptococcus mutans, and Porphyromonas gingivalis (n = 5 for each bacteria). The inhibition of biofilm formation (BF) was evaluated by inserting polymerized disc of composite in to a culture media colonized with Streptococcus mutans (n = 10). The release of CHX was measured using ultraviolet (255 nm) for 10 days (n = 5). The data of degree of conversion was analysed using KruskalWallis/MannWhitney, and the other variables using two-way ANOVA/Tukey, always considering a global level of significance of 5%.Results. DC ranged from 71% to 74%. E ranged from 5.7 to 8.1 GPa. FS ranged from 61.4 to 74.7 MPa. There were no statistical differences among the groups for all the variables. For the three bacteria tested the composites with CHX loaded presented inhibition of growth for all concentration, except for 2,5% that did not inihibited the growth of P. gingivalis. BF was lower for the groups with 10% MMT/CHX, all groups presented BF, even those without CHX loaded. All concentrations presented release off CHX during all the 28 days analyzed.Conclusions. Within the limitation of this study it can be concluded that: all concentrations tested presented release of CHX and reduced BF. All concentration presented antibacterial activity for the three bacteria tested, except for 2,5% that did not inhibit the growth of P. gingivalis. The presence of MMT with CHX loaded did not interfere in the properties evaluated. (C) 2019 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:Objeticve。这项研究的目的是使用装载了氯己定(CHX)的MMT开发具有抗菌活性的复合材料。为此,它使用了BisGMA / TEGDMA基质,并添加了低浓度的MMT / CHX。目的是评估MMT的药物释放能力,而不是提供增强作用。用BisGMA / TEGDMA的有机基质按重量比例等比例制备了六种实验复合材料。该复合材料接受有或没有CHX的有机化蒙脱石。浓度为2.5; 5或10重量%。使用FTIR(峰值6165 cm-1; n = 5)评估转化度(DC)。立即测试了弯曲性能的样品(10x2x1mm)(24h)。弹性模量(E)和抗弯强度(FS)使用三点弯曲试验(n = 10)测量。感染晕用于测试对金黄色葡萄球菌,变形链球菌和牙龈卟啉单胞菌的抗菌活性(每种细菌n = 5)。通过将复合材料的聚合盘插入到变形链球菌(n = 10)定殖的培养基中来评估生物膜形成(BF)的抑制作用。使用紫外线(255 nm)持续10天(n = 5)测量CHX的释放。使用KruskalWallis / MannWhitney分析转化度数据,使用双向ANOVA / Tukey分析其他变量,始终考虑5%的整体显着性水平。 DC范围从71%到74%。 E的范围为5.7至8.1GPa。 FS范围从61.4到74.7 MPa。各变量之间各组之间无统计学差异。对于所测试的三种细菌,负载了CHX的复合材料在所有浓度下均表现出生长抑制作用,除了2.5%的复合物不抑制牙龈卟啉单胞菌的生长。具有10%MMT / CHX的组的BF较低,所有组均呈现BF,即使未加载CHX的组也是如此。在所分析的所有28天中,所有浓度均从CHX释放出来。在本研究的范围内,可以得出以下结论:所有测试浓度均显示CHX释放和BF降低。除了不抑制牙龈卟啉单胞菌生长的2.5%外,所有浓度均表现出对三种细菌的抗菌活性。装有CHX的MMT的存在不会影响所评估的性能。 (C)2019牙科材料学院。由Elsevier Inc.出版。保留所有权利。

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