Department of Pediatric Dentistry, Social and Environmental Medicine, Integrated Sciences of Translational Research, Institute of Health Biosciences, The University of Tokushima Graduate School, Tokushima, Japan.
Dent Mater J. 2009 Nov;28(6):735-42. doi: 10.4012/dmj.28.735.
The aims of this study were to modify dental device surface with fluorine and silver and to examine the effectiveness of this new surface modification method. Stainless steel plates were modified by plasma-based fluorine and silver ion implantation-deposition method. The surface characteristics and brushing abrasion resistance were evaluated by XPS, contact angle and brushing abrasion test. XPS spectra of modified specimens showed the peaks of fluoride and silver. These peaks were detected even after brushing abrasion test. Water contact angle significantly increased due to implantation-deposition of both fluorine and silver ions. Moreover, the contact angle of the modified specimen was significantly higher than that of fluorine only deposited specimen with the same number of brushing strokes. This study indicates that this new surface modification method of fluorine and silver ion implantation-deposition improved the brushing abrasion resistance and hydrophobic property making it a potential antimicrobial device.
本研究的目的是通过氟和银离子注入-沉积方法对牙科器械表面进行改性,并对这种新的表面改性方法的效果进行评估。采用等离子体基氟和银离子注入-沉积法对不锈钢板进行改性。采用 XPS、接触角和刷洗磨损试验对表面特性和刷洗耐磨性进行评价。改性试样的 XPS 谱图显示出氟化物和银的峰。即使在刷洗磨损试验后,仍能检测到这些峰。由于氟和银离子的注入-沉积,水接触角显著增加。此外,经过相同次数的刷洗后,改性试样的接触角明显高于仅沉积氟的试样。本研究表明,氟和银离子注入-沉积的这种新的表面改性方法提高了刷洗耐磨性和疏水性,使其成为一种有潜力的抗菌器械。