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新型再矿化和抗生物膜低收缩应力纳米复合材料用于抑制唾液生物膜和保护牙齿结构。

Novel Remineralizing and Antibiofilm Low-Shrinkage-Stress Nanocomposites to Inhibit Salivary Biofilms and Protect Tooth Structures.

作者信息

Alhussein Abdullah, Alsahafi Rashed, Alfaifi Areej, Alenizy Mohammad, Ba-Armah Ibrahim, Schneider Abraham, Jabra-Rizk Mary-Ann, Masri Radi, Garcia Fay Guadalupe, Oates Thomas W, Sun Jirun, Weir Michael D, Xu Hockin H K

机构信息

PhD Program in Dental Biomedical Sciences, University of Maryland School of Dentistry, Baltimore, MD 21201, USA.

Department of Restorative Dental Sciences, College of Dentistry, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

Materials (Basel). 2023 Oct 19;16(20):6770. doi: 10.3390/ma16206770.

Abstract

Recurrent caries remain a persistent concern, often linked to microleakage and a lack of bioactivity in contemporary dental composites. Our study aims to address this issue by developing a low-shrinkage-stress nanocomposite with antibiofilm and remineralization capabilities, thus countering the progression of recurrent caries. In the present study, we formulated low-shrinkage-stress nanocomposites by combining triethylene glycol divinylbenzyl ether and urethane dimethacrylate, incorporating dimethylaminododecyl methacrylate (DMADDM), along with nanoparticles of calcium fluoride (nCaF) and nanoparticles of amorphous calcium phosphate (NACP). The biofilm viability, biofilm metabolic activity, lactic acid production, and ion release were evaluated. The novel formulations containing 3% DMADDM exhibited a potent antibiofilm activity, exhibiting a 4-log reduction in the human salivary biofilm CFUs compared to controls ( < 0.001). Additionally, significant reductions were observed in biofilm biomass and lactic acid ( < 0.05). By integrating both 10% NACP and 10% nCaF into one formulation, efficient ion release was achieved, yielding concentrations of 3.02 ± 0.21 mmol/L for Ca, 0.5 ± 0.05 mmol/L for P, and 0.37 ± 0.01 mmol/L for F ions. The innovative mixture of DMADDM, NACP, and nCaF displayed strong antibiofilm effects on salivary biofilm while concomitantly releasing a significant amount of remineralizing ions. This nanocomposite is a promising dental material with antibiofilm and remineralization capacities, with the potential to reduce polymerization-related microleakage and recurrent caries.

摘要

继发龋仍然是一个长期存在的问题,通常与当代牙科复合材料中的微渗漏和生物活性不足有关。我们的研究旨在通过开发一种具有抗生物膜和再矿化能力的低收缩应力纳米复合材料来解决这一问题,从而对抗继发龋的进展。在本研究中,我们通过将三甘醇二乙烯基苄基醚和聚氨酯二甲基丙烯酸酯相结合,加入甲基丙烯酸二甲氨基十二烷基酯(DMADDM),以及氟化钙纳米颗粒(nCaF)和无定形磷酸钙纳米颗粒(NACP),制备了低收缩应力纳米复合材料。评估了生物膜活力、生物膜代谢活性、乳酸产生和离子释放情况。含有3% DMADDM的新型配方表现出强大的抗生物膜活性,与对照组相比,人唾液生物膜中的菌落形成单位减少了4个对数(<0.001)。此外,生物膜生物量和乳酸也显著减少(<0.05)。通过将10%的NACP和10%的nCaF整合到一个配方中,实现了有效的离子释放,钙离子浓度为3.02±0.21 mmol/L,磷离子浓度为0.5±0.05 mmol/L,氟离子浓度为0.37±0.01 mmol/L。DMADDM、NACP和nCaF的创新混合物对唾液生物膜显示出强大的抗生物膜作用,同时释放出大量的再矿化离子。这种纳米复合材料是一种有前途的牙科材料,具有抗生物膜和再矿化能力,有可能减少与聚合相关的微渗漏和继发龋。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2620/10608551/82072197e10b/materials-16-06770-g001.jpg

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