State Key Laboratory of Organic-Inorganic Composites, Beijing Laboratory of Biomedical Materials, Beijing University of Chemical Technology, Beijing 100029, P.R. China.
Shanxi Medical University School and Hospital of Stomatology & Shanxi Province Key Laboratory of Oral Diseases Prevention and New Materials, Taiyuan 030001, Shanxi, P.R. China.
J Dent. 2022 Jul;122:104156. doi: 10.1016/j.jdent.2022.104156. Epub 2022 May 7.
Aiming to achieve improved antibacterial performance for dental application, sodium fluoride (NaF) nanoparticles and photopolymerizable N,N-dodecylvinylimidazole (DCV) were co-introduced into the dental resin adhesive at different ratios.
The respective effect of NaF and DCV on adhesive curing kinetic, antibacterial activities against Staphylococcus aureus (S. aureus), Escherichia coli (E. coli), and Bacterial Flora of Human saliva (HSBF) were comprehensively evaluated. Then, the synergistic effects of NaF nanoparticles and DCV on adhesive performance were studied in terms of fluoride ion (F) release, antibacterial activity, hydrophilicity, surface potential, cytotoxicity, and bonding strength.
DCV monomer could polymerize with other adhesive monomers without influencing C = C double conversion rate, while the addition amount of DCV would affect the hydrophilicity and bonding strength of the cured adhesives. The cationic quaternary ammonium group could reduce the burst release of negative F for the adhesive at a NaF/DCV ratio (1:1, 2%), hence achieving both non-contact and contact antibacterial activity in an extended term without causing cytotoxicity.
Mixing NaF nanoparticles and DCV into the dental resin adhesive can slow down the initial burst release of F and prolong the release-type antibacterial effect. The ionic interaction between F and quaternary ammonium groups, as well as, the effect of DCV on adhesive hydrophilicity, simultaneously influence the release behavior of F. Co-incorporation of quanternary ammonium and fluoride improves adhesive's antibacterial performance for dental application.
Incorporating both NaF nanoparticles and DCV into dental resin adhesive could provide an efficient strategy for dental restoration as well as the prevention of secondary caries.
为了提高牙科应用的抗菌性能,将氟化钠(NaF)纳米粒子和可光聚合的 N,N-十二烷基乙烯基咪唑(DCV)以不同比例引入牙科树脂胶粘剂中。
综合评估 NaF 和 DCV 对胶粘剂固化动力学、金黄色葡萄球菌(S. aureus)、大肠杆菌(E. coli)和人唾液细菌群落(HSBF)的抗菌活性的影响。然后,从氟离子(F)释放、抗菌活性、亲水性、表面电位、细胞毒性和结合强度等方面研究了 NaF 纳米粒子和 DCV 对胶粘剂性能的协同作用。
DCV 单体可以与其他胶粘剂单体聚合,而不会影响 C = C 双键的转化率,而 DCV 的添加量会影响固化胶粘剂的亲水性和结合强度。阳离子季铵基团可以减少胶粘剂中 F 的非接触和接触抗菌活性的初始突释,同时不会产生细胞毒性。
将 NaF 纳米粒子和 DCV 混合到牙科树脂胶粘剂中可以减缓 F 的初始突释并延长释放型抗菌作用。F 和季铵基团之间的离子相互作用以及 DCV 对胶粘剂亲水性的影响,同时影响 F 的释放行为。季铵盐和氟化物的共掺入提高了胶粘剂的抗菌性能,适用于牙科应用。
将 NaF 纳米粒子和 DCV 同时掺入牙科树脂胶粘剂中,可为牙科修复以及预防继发龋提供一种有效的策略。