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首页> 外文期刊>The Journal of clinical pediatric dentistry >Effects of Cola-Flavored Beverages and Caffeine on Streptococcus mutans Biofilm Formation and Metabolic Activity
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Effects of Cola-Flavored Beverages and Caffeine on Streptococcus mutans Biofilm Formation and Metabolic Activity

机译:可乐味饮料和咖啡因对链球菌的生物膜形成和代谢活性的影响

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Objective: To examine the effects of cola-flavored beverages and caffeine on growth and metabolism of Streptococcus mutans biofilm. This study was designed to determine if carbonated beverages or caffeine can increase S. mutans growth and biofilm formation and metabolic activity in vitro, potentially leading to increased S. mutans-associated cariogenicity in children that consume them. Study Design: Six different cola-flavored products, plus pure caffeine, and pure high fructose corn syrup (HFCS), at different concentrations similar to those in the beverages were tested. A 16-hour culture of S. mutans was treated with different dilutions in bacteriological media. To test for the effect on biofilm formation, the biofilm was stained with crystal violet. The absorbance was determined to evaluate biofilm growth. Biofilm metabolic activity was measured based on biofilm having the ability to reduce XTT to a water-soluble orange compound. Results: The inclusion of HFCS in the beverages, as well as pure HFCS, significantly enhanced bacterial biofilm formation and metabolic activity. Pure caffeine and the presence of caffeine in beverages did not significantly increase biofilm formation, but pure caffeine significantly increased metabolism, and Diet Coke had significantly greater metabolic activity than Caffeine-Free Diet Coke. Conclusions: HFCS increases both the biofilm formation and metabolism of S. mutans, and caffeine in some cases increases metabolism of S. mutans.
机译:目的:探讨可乐味饮料和咖啡因对链球菌的生长和代谢的影响。本研究旨在确定碳酸饮料或咖啡因是否可以在体外增加Mutans生长和生物膜形成和代谢活性,可能导致含有它们的儿童的umany相关的致病性。研究设计:测试了六种不同的可乐调味产品,加上纯咖啡因和纯净的高果糖玉米糖浆(HFCs),与饮料类似的不同浓度。在细菌培养基中用不同的稀释液治疗了16小时的S. mutans培养。为了测试对生物膜形成的影响,将生物膜用晶体紫色染色。确定吸光度评估生物膜生长。基于生物膜测量生物膜代谢活性,该生物膜具有将XTT减少到水溶性橙色化合物的能力。结果:将HFC在饮料中包含,以及纯HFC,显着增强细菌生物膜形成和代谢活性。纯咖啡因和咖啡因的存在在饮料中没有显着增加生物膜形成,但纯咖啡因显着增加代谢,饮食焦炭比无咖啡因的饮食焦炭显着更大的代谢活性。结论:HFCS增加了S. mutans的生物膜形成和代谢,在某些情况下,咖啡因增加了S. mutans的代谢。

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