口腔及义齿卫生护理最佳灭菌液的实验研究

R. Rozov, V. Trezubov, V. D. Vagner, A. Urakov, Aleksey P. Reshetnikov
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引用次数: 0

摘要

简介:在临床实践中使用的防腐剂的范围是相当广泛的。然而,只有单一的研究致力于比较它们在口腔条件下的有效性。目的:通过实验研究选择最佳的抗菌洁牙剂。材料与方法:以呋喃西林(0.02%)、双光酸氯己定(0.05%)、米拉米司汀(0.01%)、氯化十六烷基吡啶(0.05%)、过氧化氢(3%)、碘、罗托康、蒸馏水为清除牙菌斑的洗涤液。牙列的模型是用石英板模仿新鲜牙菌斑制成的。仿造牙菌斑的生物材料包括两种解决方案:1)将新鲜红茶冲泡,冷却至+25℃;2)燕麦果冻,温度从+60℃到+65℃。利用微型发射器发出的白光穿过生物材料和生物板照射到牙列上后,用安培计测量血氧仪传感器在光敏装置中的电流强度,比较实验模型暴露于测试溶液前后的透明度,采用作者的方法筛选洁牙剂。结果:蒸馏水的清洁能力最低(p 0.050.001)。罗托坎、呋喃西林和碘的清洁能力较低,碘如果对其反应高,会引起牙龈袖口烧伤和过敏反应。过氧化氢的效率一般,但它会使口腔黏膜干燥。双糖酸氯己定的清洁效果最高,米拉米司汀和氯化十六烷基吡啶稍劣(p < 0.05)。从清洗能力上看,双光酸氯己定溶液明显优于双氧水(p 0.05)、碘(p 0.02)、呋喃西林(p 0.02)、罗托康(p 0.01)。结论:所述方法已获得俄罗斯联邦发明专利No. 2019121293。实验研究表明,以0.05%的双糖酸氯己定溶液清洗效果最佳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimentally Justified Choice of Optimal Antiseptic Solution for Hygienic Care of Oral Cavity and Dentures
INTRODUCTION: The range of antiseptic agents used in clinical practice, is rather wide. However, only single studies are devoted to comparative characteristics of their effectiveness in the conditions of the oral cavity. AIM: To choose the optimal antiseptic dental cleaner by experimental study. MATERIALS AND METHODS: An aqueous solution of Furacilin (0.02%), chlorhexidine bigluconate (0.05%), Miramistin (0.01%), cetylpyridinium chloride (0.05%), hydrogen peroxide (3%), Iodinol, Rotokan, distilled water were used as washing liquids for elimination of dental plaque. The model of the dentition was created from quartz plates with an imitation of fresh plaque. Biomaterial imitating dental plaque included two solutions: 1) a strong fresh infusion of black tea leaves, cooled to +25C; 2) oatmeal jelly with temperature from +60C to +65C. The authors method of screening dental cleaners was used, based on comparing the transparency of the laboratory model of the dentition before and after exposure to the test solution by determination with an amperemeter of strength of the electric current in the photosensor device from the oxyhemograph sensor after white light emitted by a mini-emitter passed through biological material and plates and fell on it. RESULTS: The cleaning capacity of distilled water is the lowest (p 0.050.001). Rotokan, Furacilin and Iodinol have a low cleaning capacity, and Iodinol can cause a burn of the gingival cuff in case of high reaction to it, and allergic reactions. Hydrogen peroxide has an average degree of efficiency, but it dries the oral mucosa. Chlorhexidine bigluconate has the highest cleaning effect, Miramistin and cetylpyridinium chloride are slightly inferior to it (p 0.05). By the cleaning capacity, chlorhexidine bigluconate solution is significantly superior to hydrogen peroxide (p 0.05), Iodinol (p 0.02), Furacilin (p 0.02), Rotokan (p 0.01). CONCLUSION: The described method received the patent for invention of the Russian Federation No. 2019121293. Experimental studies have shown the best cleaning effect of 0.05% solution of chlorhexidine bigluconate.
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