Eskandarian Tahereh, Motamedifar Mohammad, Arasteh Peyman, Eghbali Seyed Sajad, Adib Ali, Abdoli Zahra
M.Sc., Associate Professor, Department of Pediatric Dentistry, School of Dentistry, Shiraz University of Medical Sciences, Shiraz, Iran.
Ph.D. of Bacteriology, Professor, Department of Microbiology, Shiraz University of Medical Sciences, Shiraz, Iran.
Electron Physician. 2017 Mar 25;9(3):4042-4047. doi: 10.19082/4042. eCollection 2017 Mar.
No studies have yet documented the bactericidal effects of TiF4, and its role in the treatment of dental caries, and no definite protocol has been introduced to regulate its use. The aim of this study was to determine the antimicrobial/bactericidal effects of TiF4 on () and to compare it with chlorhexidine (Chx), sodium fluoride (NaF) and xylitol.
This study was conducted at the Shiraz University of Medical Sciences microbiology laboratory during March 2015 to September 2015. In this in-vitro study, first a bacterial suspension was prepared and adjusted to a 0.5 McFarland standard (equivalent to 1×10 CFU/ml). The minimal inhibitory concentration (MIC) and minimal bactericidal concentrations (MBC) of TiF4, Chx, NaF and xylitol were assessed using broth microdilution assay and disk diffusion methods. In order to neutralize the acidic nature of TiF4, we used a sodium hydroxide preparation to obtain a pH of 7.2 and repeated all of the previous tests with the neutralized TiF4 solution. We reported the final results as percentages where appropriate.
The MIC of TiF4, NaF and Chx for were 12.5%, 12.5% and 6.25%, respectively. At a concentration of 12.5% the inhibition zone diameters were 9 mm, 15mm and 14mm for TiF4, NaF and Chx, respectively. The MBC was 25%, 12.5% and 12.5% for TiF4, NaF and Chx, respectively. Xylitol failed to show any bactericidal or growth inhibitory effect in all of its concentrations. When we repeated the tests with an adjusted pH, identical results were obtained.
TiF4 solutions have anti-growth and bactericidal effects on at a concentration of 12.5% which is comparable with chlorhexidine and NaF, indicating the possible use of this solution in dental practice as an anti-cariogenic agent, furthermore the antimicrobial activity is unaffected by pH of the environment.
尚无研究记录四氟化钛(TiF4)的杀菌作用及其在龋齿治疗中的作用,也未引入明确的方案来规范其使用。本研究的目的是确定TiF4对()的抗菌/杀菌作用,并将其与洗必泰(Chx)、氟化钠(NaF)和木糖醇进行比较。
本研究于2015年3月至2015年9月在设拉子医科大学微生物实验室进行。在这项体外研究中,首先制备细菌悬液并将其调整至0.5麦氏标准(相当于1×10 CFU/ml)。使用肉汤微量稀释法和纸片扩散法评估TiF4、Chx、NaF和木糖醇的最低抑菌浓度(MIC)和最低杀菌浓度(MBC)。为了中和TiF4的酸性,我们使用氢氧化钠制剂将pH值调至7.2,并用中和后的TiF4溶液重复之前所有的测试。我们在适当的情况下以百分比形式报告最终结果。
TiF4、NaF和Chx对()的MIC分别为12.5%、12.5%和6.25%。在12.5%的浓度下,TiF4、NaF和Chx的抑菌圈直径分别为9毫米、15毫米和14毫米。TiF4、NaF和Chx的MBC分别为25%、12.5%和12.5%。木糖醇在所有浓度下均未显示出任何杀菌或生长抑制作用。当我们用调整后的pH值重复测试时,得到了相同的结果。
TiF4溶液在浓度为12.5%时对()具有抗生长和杀菌作用,这与洗必泰和NaF相当,表明该溶液在牙科实践中可能作为防龋剂使用,此外,抗菌活性不受环境pH值的影响。