Perchyonok Victoria Tamara, Zhang Shengmiao, Grobler Sias R, Oberholzer Theunis G
Department of Research and Innovations, VTPCHEM Pty. Ltd., Glenhuntly, Melbourne, 3163, Australia.
School of Dentistry and Oral Health, Griffith University, Gold Coast, Southport, 4215, QLD, Australia.
Eur J Dent. 2013 Oct;7(4):412-418. doi: 10.4103/1305-7456.120666.
The purpose of the study was to design and evaluate novel functional chitosan hydrogels (chitosan-H-propolis, chitosan-H-propolis-nystatin and chitosan-H-nystatin) by using the chitosan-H polymer as "dual function restorative materials".
The nystatin/antioxidant carrier gel was prepared by dispersion of the corresponding component in glycerol and 3% acetic acid with 5% chitosan gelling agent was then added to the dispersion with continuous mixing. The natural bio-adhesive functionalized chitosan hydrogels were combined with built in drug delivery system and bio-actives such as propolis in order to increase the dentin bond strength capacity and maintain therapeutic properties of the alternative drug delivery system. The surface morphology, release behaviors (physiological pH and also in acidic conditions), stability of nystatin:antioxidant:chitosan and the effect of the hydrogels on the shear bond strength of dentin were also evaluated.
Non-parametric ANOVA test was used to asses significance of higher shear bond values than dentine treated or not treated with phosphoric acid.
The release of both nystatin and propolis confer the added benefit of dual action of a functional therapeutic delivery when comparing the newly designed chitosan-based hydrogel restorative materials to commercially available nystatin alone. Neither the release of nystatin nor the antioxidant stability was affected by storage. Chitosan-H, chitosan-propolis, chitosan-nystatin and chitosan-nystatin-propolis treated dentine gives significantly (P < 0.05) higher shear bond values (P < 0.05) than dentine treated or not treated with phosphoric acid.
The added benefits of their unique functionality involve increased dentin adhesive bond strengths (after 24 h and after 6 months) and positive influence on the nystatin release. Nystatin was a model therapeutic agent, evaluating the concept of using functional materials as carriers for pro-drugs as well as displaying a certain degree of defence mechanism for free radical damage of the novel functional drug delivery. Overall, there was an insignificant relapse in the shear bond strength after 6 months.
本研究旨在设计并评估新型功能性壳聚糖水凝胶(壳聚糖 - H - 蜂胶、壳聚糖 - H - 蜂胶 - 制霉菌素和壳聚糖 - H - 制霉菌素),将壳聚糖 - H聚合物用作“双功能修复材料”。
将相应成分分散于甘油和3%乙酸中制备制霉菌素/抗氧化剂载体凝胶,然后加入5%的壳聚糖胶凝剂并持续搅拌。天然生物粘附功能化壳聚糖水凝胶与内置药物递送系统及蜂胶等生物活性物质相结合,以提高牙本质粘结强度并维持替代药物递送系统的治疗特性。还评估了表面形态、释放行为(生理pH值及酸性条件下)、制霉菌素:抗氧化剂:壳聚糖的稳定性以及水凝胶对牙本质剪切粘结强度的影响。
采用非参数方差分析检验评估高于经磷酸处理或未处理牙本质的较高剪切粘结值的显著性。
与市售单一制霉菌素相比,新设计的基于壳聚糖的水凝胶修复材料中制霉菌素和蜂胶的释放赋予了功能性治疗递送双重作用的额外益处。制霉菌素的释放和抗氧化稳定性均不受储存影响。壳聚糖 - H、壳聚糖 - 蜂胶、壳聚糖 - 制霉菌素和壳聚糖 - 制霉菌素 - 蜂胶处理的牙本质的剪切粘结值显著高于(P < 0.05)经磷酸处理或未处理的牙本质(P < 0.05)。
其独特功能的额外益处包括提高牙本质粘结强度(24小时后和6个月后)以及对制霉菌素释放产生积极影响。制霉菌素是一种模型治疗剂,评估了使用功能材料作为前药载体的概念,并展示了对新型功能药物递送的自由基损伤的一定程度的防御机制。总体而言,6个月后剪切粘结强度的复发不显著。