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具有不同消毒化学组成的超声清洁产品对被生物负载污染的牙科器械的功效。

Efficacy of Ultrasonic Cleaning Products With Various Disinfection Chemistries on Dental Instruments Contaminated With Bioburden.

作者信息

Seneviratne Chaminda Jayampath, Khan Sadaf Aiman, Zachar Jessica, Yang Zhihe, Kiran Ramya, Walsh Laurence J

机构信息

School of Dentistry, The University of Queensland, Brisbane, Australia.

School of Dentistry, The University of Queensland, Brisbane, Australia.

出版信息

Int Dent J. 2025 Jun;75(3):1632-1639. doi: 10.1016/j.identj.2025.02.009. Epub 2025 Mar 25.

Abstract

OBJECTIVES

The effective cleaning of reusable dental instruments that removes organic bioburden is a crucial process in infection prevention and control in dental clinics. Despite widespread use, the parameters affecting the efficacy of ultrasonic cleaning products with different chemistries remain underexplored. In the present study, we comprehensively evaluated the cleaning efficacy of commonly available cleaning detergent products against organic bioburden on dental instruments.

METHODS

Thirteen commercially available cleaning detergent products were assessed using Browne STF Load Check Indicators under both static and ultrasonic cleaning conditions at room temperature (25°C) and warm temperature (40°C). Experiments evaluated the effect of product concentration and contact time (1, 5, 10, and 30 minutes), and the economic impact of cleaning detergent dilution. Cleaning efficacy was also tested against artificially soiled dental instruments using ProReveal fluorescence technology.

RESULTS

Significant variability in cleaning efficacy among test products was observed. Optizyme Ultra (6 mL/L), Asepti Multizyme (8 mL/L), and Getinge Enzymatic Plus (20 mL/L) demonstrated superior cleaning performance, particularly when used in ultrasonic cleaners at 40°C. In general, enzymatic products consistently outperformed nonenzymatic products for the removal of organic bioburden. Products performed better with ultrasonic agitation than under static conditions, and optimal results were obtained after 10 minutes exposure time at 40°C.

CONCLUSION

The present study for the first time provides a comprehensive insight into the role of product selection, optimal concentration, temperature, and cleaning duration in maximising soil removal from dental instruments.

摘要

目的

有效清洁可重复使用的牙科器械以去除有机生物负荷,是牙科诊所感染预防与控制的关键环节。尽管超声清洁产品已广泛使用,但不同化学成分的产品对清洁效果的影响参数仍未得到充分研究。在本研究中,我们全面评估了市售清洁洗涤剂产品对牙科器械上有机生物负荷的清洁效果。

方法

使用布朗STF负载检查指示剂,在室温(25°C)和温热温度(40°C)下的静态和超声清洁条件下,对13种市售清洁洗涤剂产品进行评估。实验评估了产品浓度和接触时间(1、5、10和30分钟)的影响,以及清洁洗涤剂稀释的经济影响。还使用ProReveal荧光技术对人工污染的牙科器械进行了清洁效果测试。

结果

观察到测试产品的清洁效果存在显著差异。Optizyme Ultra(6 mL/L)、Asepti Multizyme(8 mL/L)和洁定酶加(20 mL/L)表现出卓越的清洁性能,尤其是在40°C的超声清洗机中使用时。总体而言,酶类产品在去除有机生物负荷方面始终优于非酶类产品。超声搅拌下产品的清洁效果优于静态条件,在40°C下暴露10分钟后可获得最佳结果。

结论

本研究首次全面深入地探讨了产品选择、最佳浓度、温度和清洁持续时间在最大化牙科器械去污方面的作用。

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