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基于海藻酸盐-壳聚糖聚电解质复合物的抗组胺透皮膜剂的设计:表征与渗透研究

Design of antihistaminic transdermal films based on alginate-chitosan polyelectrolyte complexes: characterization and permeation studies.

作者信息

Lefnaoui Sonia, Moulai-Mostefa Nadji, Yahoum Madiha M, Gasmi Sarah N

机构信息

a Materials and Environmental Laboratory , University of Medea , Ain D'Heb , Medea , Algeria.

b Faculty of Sciences , University of Medea , Ain D'Heb , Medea , Algeria.

出版信息

Drug Dev Ind Pharm. 2018 Mar;44(3):432-443. doi: 10.1080/03639045.2017.1395461. Epub 2017 Nov 8.

Abstract

The purpose of this study was to develop suitable matrix-type transdermal drug delivery systems of Ketotifen fumarate (KF) as antiasthmatic drugs. Chitosan-alginate polyelectrolyte complex (PEC) films were used as drug release regulators for KF. Antihistaminic films with variable PEC compositions were prepared using different ratios of chitosan (CTS) to sodium alginate (ALG). Propylene glycol (PG) was used as plasticizer; Tween 80 (T) and Span 20 (S) were used as permeability enhancers. Nine formulations were obtained by film casting method and characterized in terms of weight uniformity, thickness, folding endurance, moisture lost, and moisture absorption. In addition, drug release and permeation through rat abdominal skin mounted in Franz cell were investigated. All formulations were found to be suitable in terms of physicochemical characteristics, and there was no significant interaction between the used drug and polymers. It was noticed that when T is used as permeation enhancer, a satisfactory drug release pattern was found where 99.88% of drug was released and an amount of 2.121 mg/cm of KF was permeated after 24 h. For the optimal formulation, a permeability coefficient of 14.00 ± 0.001 cm h and a latency time of 0.35 ± 0.02 h were found. The in-vitro analysis showed controlled release profile which was fitted by Korsmeyer-Peppas model (R = 0.998). The obtained results suggested that new controlled release transdermal formulations of asthmatic drugs could be suitably designed as an alternative to the common forms.

摘要

本研究的目的是开发适合作为抗哮喘药物的富马酸酮替芬(KF)的基质型透皮给药系统。壳聚糖-海藻酸钠聚电解质复合物(PEC)膜被用作KF的药物释放调节剂。使用不同比例的壳聚糖(CTS)与海藻酸钠(ALG)制备了具有可变PEC组成的抗组胺膜。丙二醇(PG)用作增塑剂;吐温80(T)和司盘20(S)用作渗透促进剂。通过流延法获得了九种制剂,并对其重量均匀性、厚度、耐折性、水分损失和吸湿率进行了表征。此外,还研究了药物通过安装在Franz扩散池中的大鼠腹部皮肤的释放和渗透情况。所有制剂在物理化学特性方面均被认为是合适的,并且所用药物与聚合物之间没有显著相互作用。值得注意的是,当使用T作为渗透促进剂时,发现了令人满意的药物释放模式,24小时后99.88%的药物被释放,KF的渗透量为2.121mg/cm。对于最佳制剂,渗透系数为14.00±0.001cm/h,滞后时间为0.35±0.02h。体外分析显示了符合Korsmeyer-Peppas模型(R=0.998)的控释曲线。所得结果表明,哮喘药物的新型控释透皮制剂可以作为常见剂型的合适替代方案进行合理设计。

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