In vitro antibacterial effect of fifth generation dentin bonding agent incorporated with nisin on Streptococcus mutans

IF 1.68 Q2 Dentistry
Gopal Keerthipriya, Nesamani Ravikumar, Sekar Mahalaxmi
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Abstract

Bacterial adherence to restorative materials such as composite resin is one of the aetiology of secondary caries. This study evaluated the antibacterial efficacy of fifth generation bonding agent (BA) modified with nisin, against Streptococcus mutans based on its growth, adherence and membrane integrity.

Adhesive eluents of the experimental bonding agents were obtained using 250?μl Brain Heart Infusion (BHI) broth and the groups were control (BA with 0% Nisin), bonding agent with 1 wt% (NBA 1) and 5 wt% nisin (NBA 5). To this, 10?μl S. mutans culture was added and incubated at 37?°C. Bacterial growth was estimated by changes in optical density using spectrophotometer every 20?min for 2?h. The results were statistically analysed using one way ANOVA followed by Tukey Post Hoc test. For adherence and membrane integrity test, 10?μl of BHI supplemented with 1% sucrose and 50?μl of bacterial suspension were inoculated onto the cured specimens, and incubated for 4?h. After rinsing, 1?ml of Live/Dead BacLight bacterial viability stain was added and incubated in the dark for 15?min and observed under confocal laser scanning microscope (CLSM) for intact (green/live) and damaged (red/dead) bacterial membranes.

Mean optical density was significantly higher in control group at all time intervals with maximum value at 2?h (0.83?±?0.008), while there was a concentration dependant reduction in bacterial growth with the NBA groups (0.50?±?0.007). Correspondingly, the NBA groups showed higher amount of dead than live bacteria, while live bacteria were predominant in the control group.

Addition of an antibacterial agent nisin in dentin bonding agent may render the resin dentin interface more resistant to bacterial penetration, and adherence of cariogenic bacteria like S. mutans.

Abstract Image

第五代牙本质粘接剂联合nisin对变形链球菌的体外抗菌作用
细菌对修复材料如复合树脂的粘附是继发性龋齿的病因之一。本研究通过观察第五代粘接剂(BA)对变形链球菌的生长、粘附性和膜完整性的影响,对其抗菌效果进行了评价。用250?μl脑心灌注(BHI)肉汤和对照组(BA添加0% Nisin)、黏合剂添加1 wt% (nba1)和5 wt% Nisin (nba5)。μl加入变形链球菌培养物,37℃孵育。利用分光光度计每隔20?最小2小时。结果采用单因素方差分析和Tukey事后检验进行统计学分析。粘附性和膜完整性测试,10?μl的BHI添加1%蔗糖和50?接种1 μl菌悬液,孵育4 h。洗净后,1?加入活/死BacLight细菌活力染色液ml,在黑暗中孵育15?在共聚焦激光扫描显微镜(CLSM)下观察完整(绿色/活)和损坏(红色/死)的细菌膜。对照组在各时间间隔的平均光密度均显著增高,在2?h(0.83±0.008),而NBA组细菌生长呈浓度依赖性降低(0.50±0.007)。相应的,NBA组的死菌数量高于活菌数量,而对照组的活菌数量占主导地位。在牙本质粘接剂中加入抗菌剂nisin可以使树脂牙本质界面对细菌的渗透和变形链球菌等致龋细菌的粘附具有更强的抵抗力。
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来源期刊
Applied Adhesion Science
Applied Adhesion Science Dentistry-Dentistry (miscellaneous)
自引率
0.00%
发文量
0
审稿时长
13 weeks
期刊介绍: Applied Adhesion Science focuses on practical applications of adhesives, with special emphasis in fields such as oil industry, aerospace and biomedicine. Topics related to the phenomena of adhesion and the application of adhesive materials are welcome, especially in biomedical areas such as adhesive dentistry. Both theoretical and experimental works are considered for publication. Applied Adhesion Science is a peer-reviewed open access journal published under the SpringerOpen brand. The journal''s open access policy offers a fast publication workflow whilst maintaining rigorous peer review process.
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