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首页> 外文期刊>Photodiagnosis and Photodynamic Therapy >Physico-mechanical and antimicrobial properties of an orthodontic adhesive containing cationic curcumin doped zinc oxide nanoparticles subjected to photodynamic therapy
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Physico-mechanical and antimicrobial properties of an orthodontic adhesive containing cationic curcumin doped zinc oxide nanoparticles subjected to photodynamic therapy

机译:包含阳离子姜黄素掺杂的氧化锌纳米粒子的正畸粘合剂的光机械疗法的物理力学和抗菌性能

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Background: Potential complications on the crown level during fixed orthodontic procedures are white spot, enamel demineralization and tooth decay. This study evaluated the antimicrobial properties of an orthodontic adhesive incorporating cationic curcumin doped zinc oxide nanoparticles (cCur/ZnONPs), which can have the highest concentration of cCur/ZnONPs and shear bond strength (SBS) value simultaneously, against cariogenic bacteria including Streptococcus mutans, Streptococcus sobrinus, and Lactobacillus acidophilus.Materials and methods: Following synthesis and confirmation of cCur/ZnONPs, SBS and adhesive remnant index (ARI) of the test adhesives containing cCur/ZnONPs (1.2, 2.5, 5, 7.5, and 10% wt.) were measured using universal testing machine and stereomicroscope, respectively. After continuously rinsed (up to 180 day), the residual antimicrobial ability of modified adhesives which can have the highest concentration of cCur/ZnONPs and SBS value simultaneously were determined by disc agar diffusion (DAD), biofilm formation inhibition, and metabolic activity assays following photo-activation using light-emitting diode (LED) for 5 min against multi-species cariogenic biofilm-producing bacteria.Results: Adhesive with 7.5% wt. cCur/ZnONPs showed the highest concentration of cCur/ZnONPs and SBS value (14.89 +/- 3.26 MPa, P 0.05) simultaneously. No significant differences in ARI scores were found between the modified adhesive and control (Transbond XT without the cCur/ZnONPs). 7.5% wt. cCur/ZnONPs following photo-activation was not colonized by the test microorganisms and suppressed 100% metabolic activity of the test microorganisms up to 90 day compared to the control group (cCur/ZnONPs free LED irradiation; P 0.05). In DAD assay, the reduction of photodynamic disinfection of the 7.5% wt. cCur/ZnONPs against test bacteria was positively associated to the time, in such a way that it was decreased significantly after 60 day. From days 120 onwards, microbial biofilm formation and metabolic activity was progressively increased on 7.5% wt. cCur/ZnONPs adhesive discs compared to the control group (cCur/ZnONPs free LED irradiation).Conclusions: Our findings highlight the photo-activated 7.5% wt. cCur/ZnONPs can serve as an orthodontic adhesive additive to control the cariogenic multispecies biofilm, and also to reduce their metabolic activity.
机译:背景:在固定的正畸手术过程中,冠水平的潜在并发症是白斑,牙釉质脱矿质和蛀牙。这项研究评估了掺有阳离子姜黄素掺杂的氧化锌纳米粒子(cCur / ZnONPs)的正畸粘合剂的抗微生物特性,该纳米粒子可以同时具有最高的cCur / ZnONPs浓度和剪切键强度(SBS)值,以抵抗包括变形链球菌在内的致癌细菌,链球菌和嗜酸乳杆菌材料和方法:合成并确认cCur / ZnONPs,SBS和含有cCur / ZnONPs(1.2%,2.5%,5%,7.5%和10%wt。 )分别使用通用测试机和立体显微镜进行测量。连续漂洗(长达180天)后,可通过盘琼脂扩散(DAD),生物膜形成抑制和代谢活性测定法测定同时具有最高cCur / ZnONPs和SBS值浓度的改性粘合剂的残留抗菌能力。使用发光二极管(LED)进行5分钟的光激活,以对抗多种引起龋齿的生物膜产生细菌。结果:重量百分比为7.5%的粘合剂cCur / ZnONPs的cCur / ZnONPs浓度最高,SBS值最高(14.89 +/- 3.26 MPa,P <0.05)。改性胶粘剂和对照(不含cCur / ZnONPs的Transbond XT)之间的ARI得分没有发现显着差异。 7.5%重量与对照组相比,光活化后的cCur / ZnONPs不会在测试微生物中定居,并且在90天之内抑制了测试微生物的100%代谢活性(无cCur / ZnONPs的LED照射; P <0.05)。在DAD测定中,减少了7.5%wt的光动力消毒。针对测试细菌的cCur / ZnONPs与时间呈正相关,以这种方式在60天后显着降低。从第120天起,微生物生物膜形成和代谢活性在7.5重量%上逐渐增加。与对照组相比,cCur / ZnONPs胶粘光盘(无cCur / ZnONPs的LED照射)。结论:我们的发现强调了光活化7.5%wt。 cCur / ZnONPs可以用作正畸粘合剂添加剂,以控制致龋多物种生物膜,并降低其代谢活性。

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