The influence of cocoa fruit husk extract on the degradation of eps (extracellular polymeric substance) in Lactobacillus acidophilus biofilm

Azimah Regita
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Abstract

Introduction: Dental caries is characterized by progressive demineralization and plaque formation by Lactobacillus acidophilus bacteria due to biofilm formation as a microbial defense mechanism that binds to EPS. To address this issue, cocoa fruit husks extract is utilized as it contains active flavonoids with antibacterial properties. Objective: Demonstrate that cocoa fruit husk extract can degrade Lactobacillus acidophilus bacterial EPS biofilm and determine the optimal concentration of cocoa fruit husk extract. Methods: Cocoa Fruit Husk Extract Preparation was followed by Lactobacillus acidophilus bacterial preparation. Dilution was performed to achieve a concentration of 106 Bacteria/mL. Microtiter plates with flat-bottom 24 wells were sealed. They were then divided into two groups: one as a control without cocoa fruit husk extract and the other with cocoa fruit husk extract at concentrations of 1.56%; 3.125%; 4.69%; 6.25%; and 7.8%, and incubated at 35°C for 24 hours. Subsequently, they were aspirated, washed 4 times with phosphate-buffered saline, stained with dextran alexa fluor 647, and rinsed with distilled water. Biofilm sections, 0.5 mm thick, were placed on glass slides, and EPS Biofilm was measured using CLSM at 40x magnification. Results: The division into microtiter plates showed that the 7.8% concentration had the highest potential with a value of X ± SD = 8.3366 ± 1.76364 in degrading EPS biofilm compared to others. This is in line with previous research, indicating that higher extract concentrations lead to better biofilm degradation activity. Conclusion: Cocoa fruit husk extract can degrade Lactobacillus acidophilus bacterial EPS biofilm, with the most optimal concentration being 7.8%.
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可可果壳提取物对嗜酸乳杆菌生物膜细胞外聚合物质降解的影响
简介:龋齿的特点是嗜酸乳杆菌在生物膜形成过程中与EPS结合形成菌斑。为了解决这个问题,可可果壳提取物被利用,因为它含有具有抗菌特性的活性类黄酮。目的:研究可可果壳提取物对嗜酸乳杆菌EPS生物膜的降解作用,确定可可果壳提取物的最佳浓度。方法:采用可可果壳提取物制剂和嗜酸乳杆菌制剂。稀释至浓度为106个细菌/mL。平底24孔微滴板密封。然后将它们分为两组,一组作为对照组,不添加可可果壳提取物,另一组添加浓度为1.56%的可可果壳提取物;3.125%;4.69%;6.25%;7.8%, 35℃孵育24小时。随后抽吸,用磷酸盐缓冲盐水洗涤4次,用葡聚糖alexa flu647染色,用蒸馏水冲洗。将0.5 mm厚的生物膜切片置于载玻片上,用40倍放大倍率CLSM测量EPS生物膜。结果:微滴板划分结果显示,7.8%浓度对EPS生物膜的降解电位最高,其值为X±SD = 8.3366±1.76364。这与以往的研究结果一致,表明提取物浓度越高,生物膜降解活性越好。结论:可可果壳提取物可降解嗜酸乳杆菌EPS生物膜,其最佳浓度为7.8%。
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审稿时长
12 weeks
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