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探索负载氧化锌纳米颗粒的甲基丙烯酸酯基牙科材料的物理化学、机械和光催化抗菌性能。

Exploring the Physicochemical, Mechanical, and Photocatalytic Antibacterial Properties of a Methacrylate-Based Dental Material Loaded with ZnO Nanoparticles.

作者信息

Comeau Patricia, Burgess Julia, Malekafzali Niknaz, Leite Maria Luisa, Lee Aidan, Manso Adriana

机构信息

Department of Oral Health Sciences, Faculty of Dentistry, The University of British Columbia, Vancouver, BC V6T 1Z3, Canada.

出版信息

Materials (Basel). 2022 Jul 21;15(14):5075. doi: 10.3390/ma15145075.

Abstract

While resin-based materials meet the many requirements of a restorative material, they lack adequate, long-lasting antimicrobial power. This study investigated a zinc oxide nanoparticle (ZnO NP)-loaded resin-blend (RB) toward a new antimicrobial photodynamic therapy (aPDT)-based approach for managing dental caries. The results confirmed that up to 20 wt% ZnO NPs could be added without compromising the degree of conversion (DC) of the original blend. The DC achieved for the 20 wt% ZnO NP blend has been the highest reported. The effects on flexural strength (FS), shear bond strength to dentin (SBS), water sorption (WS), solubility (SL), and viability of under 1.35 J/cm blue light or dark conditions were limited to ≤20 wt% ZnO NP loading. The addition of up to 20 wt% ZnO NPs had a minimal impact on FS or SBS, while a reduction in the bacteria count was observed. The maximum loading resulted in an increase in SL. Furthermore, 28-day aging in 37 °C water increased the FS for all groups, while it sustained the reduction in bacteria count for the 20 wt% resin blends. Overall, the ZnO NP-loaded resin-based restorative material presents significant potential for use in aPDT.

摘要

虽然树脂基材料满足了修复材料的许多要求,但它们缺乏足够持久的抗菌能力。本研究针对一种基于新型抗菌光动力疗法(aPDT)的龋齿管理方法,研究了负载氧化锌纳米颗粒(ZnO NP)的树脂共混物(RB)。结果证实,在不影响原始共混物转化率(DC)的情况下,可添加高达20 wt%的ZnO NPs。20 wt% ZnO NP共混物所达到的DC是已报道的最高值。在1.35 J/cm蓝光或黑暗条件下,对弯曲强度(FS)、与牙本质的剪切粘结强度(SBS)、吸水率(WS)、溶解度(SL)以及细菌活力的影响仅限于ZnO NP负载量≤20 wt%。添加高达20 wt%的ZnO NPs对FS或SBS的影响最小,同时观察到细菌数量减少。最大负载量导致SL增加。此外,在37°C水中老化28天增加了所有组的FS,同时维持了20 wt%树脂共混物中细菌数量的减少。总体而言,负载ZnO NP的树脂基修复材料在aPDT中具有显著的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/519d/9319981/dcacae526d81/materials-15-05075-g001.jpg

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