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采用无毒化学物质控制牙科治疗机水路生物膜的方案:物理、化学、机械和生物学视角。

Protocol with non-toxic chemicals to control biofilm in dental unit waterlines: physical, chemical, mechanical and biological perspective.

机构信息

Human Exposome and Infectious Diseases Network - HEID, School of Nursing of Ribeirão Preto, University of São Paulo, Ribeirão Preto, São Paulo, Brazil.

Department of Dental Materials and Prosthodontics, School of Dentistry of Ribeirão Preto, University of São Paulo, Ribeirão Preto, São Paulo, Brazil.

出版信息

Biofouling. 2022 Jul;38(6):628-642. doi: 10.1080/08927014.2022.2106857. Epub 2022 Aug 4.

Abstract

Biosafety in dentistry aims to combat cross-contamination and biofilm in dental unit waterlines. The aim was to investigate from a physical, chemical, mechanical and biological perspective, a protocol for using chemical products (citric acid, sodium bicarbonate and sodium chloride) to improve and maintain water quality in dental unit waterlines. Change in microhardness and corrosion tendency were observed in stainless steel samples. On the polyurethane surfaces, there were changes in color, microhardness and roughness. Anti-biofilm evaluations revealed a significant reduction in the biofilm biomass, metabolic activity and residual biofilm. These findings suggest that the protocol analyzed in this study showed an innovative potential against biofilm in dental unit waterlines, preserving the physical, chemical and mechanical properties of the materials.

摘要

牙科生物安全旨在防止牙科治疗设备内部水路的交叉污染和生物膜。本研究从物理、化学、机械和生物学角度出发,旨在探讨一种使用化学产品(柠檬酸、碳酸氢钠和氯化钠)来改善和维持牙科治疗设备内部水路水质的方案。研究观察了不锈钢样本的显微硬度和腐蚀倾向的变化,以及聚氨酯表面的颜色、显微硬度和粗糙度的变化。抗生物膜评估显示生物膜生物量、代谢活性和残留生物膜有显著减少。这些发现表明,本研究中分析的方案显示出了在牙科治疗设备内部水路抑制生物膜的创新潜力,同时保持了材料的物理、化学和机械性能。

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