Zhu Yi, Marin Lina M, Xiao Yizhi, Gillies Elizabeth R, Siqueira Walter L
School of Biomedical Engineering, The University of Western Ontario, 1151 Richmond Street, London, ON N6A 3K7, Canada.
College of Dentistry, University of Saskatchewan, 105 Wiggins Rd, Saskatoon, SK S7N 5E4, Canada.
Nanomaterials (Basel). 2021 Apr 17;11(4):1028. doi: 10.3390/nano11041028.
Salivary proteins such as histatins (HTNs) have demonstrated critical biological functions directly related to tooth homeostasis and prevention of dental caries. However, HTNs are susceptible to the high proteolytic activities in the oral environment. Therefore, pH-sensitive chitosan nanoparticles (CNs) have been proposed as potential carriers to protect proteins from enzymatic degradation at physiological salivary pH. Four different types of chitosan polymers were investigated and the optimal formulation had good batch to batch reproducibility, with an average hydrodynamic diameter of 144 ± 6 nm, a polydispersity index of 0.15 ± 0.04, and a zeta potential of 18 ± 4 mV at a final pH of 6.3. HTN3 encapsulation and release profiles were characterized by cationic polyacrylamide gel electrophoresis. The CNs successfully encapsulated HTN3 and selectively swelled at acidic pH to facilitate HTN3 release. Protection of HTN3 against enzymatic degradation was investigated in diluted whole saliva. HTN3 encapsulated in the CNs had a prolonged survival time compared to the free HTN3. CNs with and without HTN3 also successfully reduced biofilm weight and bacterial viability. The results of this study have demonstrated the suitability of CNs as potential protein carriers for oral applications, especially for complications occurring at acidic conditions.
诸如富组蛋白(HTNs)之类的唾液蛋白已显示出与牙齿稳态和预防龋齿直接相关的关键生物学功能。然而,HTNs易受口腔环境中高蛋白水解活性的影响。因此,已提出pH敏感的壳聚糖纳米颗粒(CNs)作为潜在的载体,以在生理唾液pH值下保护蛋白质免受酶降解。研究了四种不同类型的壳聚糖聚合物,最佳配方具有良好的批次间重现性,在最终pH值为6.3时,平均流体动力学直径为144±6 nm,多分散指数为0.15±0.04,ζ电位为18±4 mV。通过阳离子聚丙烯酰胺凝胶电泳对HTN3的包封和释放曲线进行了表征。CNs成功地包封了HTN3,并在酸性pH下选择性膨胀以促进HTN3释放。在稀释的全唾液中研究了CNs对HTN3酶降解的保护作用。与游离的HTN3相比,包封在CNs中的HTN3具有更长的存活时间。含有和不含有HTN3的CNs也成功降低了生物膜重量和细菌活力。这项研究的结果表明,CNs作为潜在的口服蛋白质载体是合适的,特别是对于在酸性条件下发生的并发症。