Pilicheva Bissera, Uzunova Yordanka, Marudova Maria
Department of Pharmaceutical Sciences, Faculty of Pharmacy, Medical University of Plovdiv, 15A Vassil Aprilov Blvd, 4002 Plovdiv, Bulgaria.
Research Institute, Medical University of Plovdiv, 15A Vassil Aprilov Blvd, 4002 Plovdiv, Bulgaria.
Polymers (Basel). 2022 Feb 14;14(4):734. doi: 10.3390/polym14040734.
The goal of this research was to study the potential of polyelectrolyte multilayers as buccal dosage forms for drug delivery and to investigate how the properties of the drugs impact the overall performance of the delivery system. Multilayer films based on the polyelectrolyte interaction between casein and chitosan were developed using benzydamine, tolfenamic acid and betahistine as model drugs. The samples were characterized for surface pH, moisture content and moisture absorption, swelling behavior and mucoadhesion. Additionally, surface morphology was investigated, as well as the drugs' physical state after incorporation in the multilayer films. The samples proved to be non-irritant (pH was within the physiological range), physically stable (moisture content and moisture absorption below 5%) and mucoadhesive, adsorbing from 60 to 70% mucin. The release behavior corelated to the swelling index profiles of the samples and was strongly dependent on the drug solubility. The developed multilayer films appeared to be an optimum delivery system for sparingly soluble drugs due to the high drug loading achieved.
本研究的目的是研究聚电解质多层膜作为药物递送口腔剂型的潜力,并研究药物性质如何影响递送系统的整体性能。以苯佐卡因、托芬那酸和倍他司汀为模型药物,基于酪蛋白和壳聚糖之间的聚电解质相互作用制备了多层膜。对样品的表面pH值、水分含量和吸湿率、溶胀行为和粘膜粘附性进行了表征。此外,还研究了表面形态以及药物掺入多层膜后的物理状态。样品被证明无刺激性(pH值在生理范围内)、物理稳定(水分含量和吸湿率低于5%)且具有粘膜粘附性,可吸附60%至70%的粘蛋白。释放行为与样品的溶胀指数曲线相关,并且强烈依赖于药物溶解度。由于实现了高载药量,所制备的多层膜似乎是难溶性药物的最佳递送系统。