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Evaluation of the antimicrobial activity and compressive strength of a dental cement modified using plant extract mixture

机译:使用植物提取物混合物评估牙科水泥改性牙科水泥的抗菌活性和抗压强度

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摘要

Literature lacks sufficient data regarding addition of natural antibacterial agents to glass ionomer cement (GICs). Hence, the aim of the study was to increase the antimicrobial properties of GICs through its modification with mixture of plant extracts to be evaluated along with an 0.5% chlorohexidine-modified GIC (CHX-GIC) with regard to biological and compressive strength properties. Conventional GIC (freeze-dried version) and CHX were used. Alcoholic extract of Salvadora persica, Olea europaea, and Ficus carcia leaves were prepared using a Soxhlet extractor for 12h. The plant extract mixture (PE) was added in three different proportions to the water used for preparation of the dental cement (Group 1:1 PE, 2:1 PE, and 1:2 PE). Specimens were then prepared and tested against the unmodified GIC (control) and the 0.5% CHX-GIC. Chemical analysis of the extract mixture was performed using Gas chromatography-mass spectrometry. Antimicrobial activity was evaluated using agar diffusion assay against Micrococcus luteus and Streptoccocus mutans. Compressive strength was evaluated according to ISO 9917-1:2007 using a Zwick testing machine at a crosshead speed of 0.5mm/min. Antimicrobial activity against Streptoccocus mutans was significantly increased for all the extract-modified materials compared to the unmodified cement, and the highest concentration was comparable to the CHX-GIC mixture. The activity against Micrococcus luteus was also significantly increased, but only for the material with the highest extract concentration, and here the CHX-GIC group showed statistically the highest antimicrobial activity. Compressive strength results revealed that there was no statistically significant difference between the different mixtures and the control except for the highest tested concentration that showed the highest mean values. The plant extracts (PEs) enhanced the antimicrobial activity against S. mutans and also against M. luteus in the higher concentration while compressive strength was improved by addition of the PE at higher concentrations.
机译:文献缺乏有足够的数据,所述添加到玻璃离聚物水泥(GIC)中加入天然抗菌剂。因此,该研究的目的是通过用植物提取物的混合物在与生物学和抗压强度特性方面与0.5%氯己酯改性的GIC(CHX-GIC)进行评估的植物提取物的混合物来增加GIC的抗微生物性质。使用常规的GIC(冷冻干燥版)和CHX。使用Soxhlet提取器制备萨尔瓦多PESSICA,Olea Europaea和Ficus Carcia叶子的酒精提取物12小时。将植物提取物混合物(PE)以三种不同的比例加入到用于制备牙科水泥的水(第1族:1 PE,2:1 PE和1:2 PE)的水。然后制备标本并测试并测试未改性的GIC(对照)和0.5%CHX-GIC。使用气相色谱 - 质谱法进行萃取混合物的化学分析。使用琼脂扩散测定对微球菌和链球菌的调查评估抗微生物活性。根据ISO 9917-1:2007使用ZWICK试验机以0.5mm / min的十字头速度评价抗压强度。与未修饰的水泥相比,所有提取物改性材料的抗菌活性显着增加,并且最高浓度与CHX-GIC混合物相当。对细胞叶黄素的活性也显着增加,但仅针对具有最高提取物浓度的材料,并且在这里,CHX-GIC组在统计上显示出最高的抗微生物活性。抗压强度结果表明,不同的混合物与对照中没有统计学上显着的差异,除了显示出最高的平均值的最高测试浓度。植物提取物(PES)增强了对S. mutAns的抗微生物活性,并且在较高浓度下通过添加PE来改善抗压强度,而在较高的浓度下提高了抗摩塔。

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  • 来源
    《Journal of materials science 》 |2020年第12期| 116.1-116.9| 共9页
  • 作者单位

    Univ Hosp Bonn Oral Technol Bonn Germany;

    Univ Hosp Bonn Inst Med Microbiol Immunol & Parasitol Bonn Germany;

    Univ Hosp Bonn Inst Med Microbiol Immunol & Parasitol Bonn Germany;

    Univ Hosp Bonn Endowed Chair Oral Technol Bonn Germany;

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