Bijle Mohammed Nadeem, Ekambaram Manikandan, Lo Edward, Yiu Cynthia
Paediatric Dentistry, Faculty of Dentistry, The University of Hong Kong, Hong Kong.
Paediatric Dentistry, Faculty of Dentistry, University of Otago, Dunedin 9016, New Zealand.
Polymers (Basel). 2020 Dec 16;12(12):2998. doi: 10.3390/polym12122998.
The in vitro study objectives were to investigate the effect of arginine (Arg) incorporation in a 5% sodium fluoride (NaF) varnish on its physical and chemical properties including F/Arg release. Six experimental formulations were prepared with L-arginine (L-Arg) and L-arginine monohydrochloride at 2%, 4%, and 8% in a 5% NaF varnish, which served as a control. The varnishes were subjected to assessments for adhesion, viscosity, and NaF extraction. Molecular dynamics were simulated to identify post-dynamics total energy for NaF=Arg/Arg>NaF/Arg<NaF concentrations. The Arg/F varnish release profiles were determined in polyacrylic lactate buffer (pH-4.5; 7 days) and artificial saliva (pH-7; 1 h, 24 h, and 12 weeks). Incorporation of L-Arg in NaF varnish significantly influences physical properties ameliorating retention ( < 0.001). L-Arg in NaF varnish institutes the Arg-F complex. Molecular dynamics suggests that NaF>Arg concentration denotes the stabilized environment compared to NaF<Arg ( < 0.001). The 2% Arg-NaF exhibits periodic perennial Arg/F release and shows significantly higher integrated mean F release than NaF ( < 0.001). Incorporating 2% L-arginine in 5% NaF varnish improves its physical properties and renders a stable matrix with enduring higher F/Arg release than control.
体外研究的目的是研究在5%的氟化钠(NaF)清漆中加入精氨酸(Arg)对其物理和化学性质(包括氟/精氨酸释放)的影响。用L-精氨酸(L-Arg)和L-精氨酸盐酸盐以2%、4%和8%的浓度在5%的NaF清漆中制备了六种实验配方,5%的NaF清漆作为对照。对清漆进行附着力、粘度和NaF提取评估。通过分子动力学模拟确定NaF=Arg/Arg>NaF/Arg<NaF浓度下的动力学后总能量。在聚丙烯酸乳酸缓冲液(pH-4.5;7天)和人工唾液(pH-7;1小时、24小时和12周)中测定精氨酸/氟清漆的释放曲线。在NaF清漆中加入L-Arg显著影响物理性质,改善保留率(<0.001)。NaF清漆中的L-Arg形成了Arg-F络合物。分子动力学表明,与NaF<Arg相比,NaF>Arg浓度表示更稳定的环境(<0.001)。2%的精氨酸-NaF表现出周期性的长期精氨酸/氟释放,并且显示出比NaF显著更高的综合平均氟释放(<0.001)。在5%的NaF清漆中加入2%的L-精氨酸可改善其物理性质,并形成一个稳定的基质,其氟/精氨酸释放比对照持久更高。