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Microbiological Evaluation of Thermoplastic PETG Dental Appliances Related to Surface Characteristics

机译:与表面特性相关的热塑性 PETG 牙科器具的微生物学评价

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摘要

(1) Background: The adhesion and microbiological behaviour of thermoplastic PETG dental appliance surfaces is governed by roughness parameters. The aim of this research was to evaluate the antibiofilm activity of alkaline peroxide-based disinfectant in Candida albicans biofilms on thermoplastic PETG, related to artificial ageing and surface characteristics, on multiscale levels. (2) Methods: In the present study, two PETG materials were investigated: Crystal® (Bio Art Dental Equipment, Sao Carlos, Brazil), noted as C, and Duran® (Scheu-Dental GmbH, Iserlohn, Germany)—noted as D. Half of the specimens were thermally cycled (TC), resulting in four sample groups, as follows: C, CTC, D, and DTC. Surface roughness was evaluated on different scale topographies. The biofilms were grown on the surfaces. An alkaline peroxide-based disinfectant was used. Statistical analyses were performed. (3) Results: Related to nanoroughness, there are insignificant differences among materials or related to thermocycling. More irregular surfaces are associated with larger grain sizes. After thermocycling, micro-roughness values increase. Disinfectant activity decreases the amount of biofilm developed on the surfaces, significantly in the two groups, but is not correlated to the material and artificial ageing. (4) Conclusion: The impact of surface roughness (Ra) on biofilm constitution is controlled by different scale topographies.
机译:(1) 背景:热塑性 PETG 牙科器具表面的粘附力和微生物行为受粗糙度参数控制。本研究的目的是在多尺度层面上评估热塑性 PETG 上白色念珠菌生物膜中碱性过氧化物基消毒剂的抗生物膜活性,与人工老化和表面特性有关。(2) 方法:在本研究中,研究了两种 PETG 材料:Crystal® (Bio Art Dental Equipment, Sao Carlos, Brazil) - 记为 C 和 Duran® (Scheu-Dental GmbH, Iserlohn, Germany) - 记为 D。一半的标本经过热循环 (TC),分为四个样品组,如下:C、CTC、D 和 DTC。在不同尺度地形上评估表面粗糙度。生物膜生长在表面。使用了碱性过氧化物基消毒剂。进行统计分析。(3) 结果:与纳米粗糙度相关,材料间差异不显著或与热循环有关。更不规则的表面与较大的晶粒尺寸相关。热循环后,微观粗糙度值增加。消毒剂活性减少了表面形成的生物膜的数量,在两组中显着减少,但与材料和人工老化无关。(4) 结论: 表面粗糙度 (Ra) 对生物膜构成的影响受不同尺度地形的控制。

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