利用聚丙烯酰胺接枝瓜尔胶的电触发经皮给药:合成、表征和配方开发

Ravindra P. Birajdar, S. Patil, Vijaykumar V. Alange, R. V. Kulkarni
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引用次数: 2

摘要

该研究旨在利用电响应性聚丙烯酰胺-接枝胶(PAAm-g-GaG)共聚物制备电触发的经皮给药系统(ETDS)。采用自由基聚合接枝法制备了PAAm-g-GaG共聚物。该PAAm-g-GaG共聚物水凝胶作为药物库,瓜尔胶(GaG)和聚乙烯醇(PVA)的混合膜作为速率控制膜(RCM)。通过FTIR、中和当量、热重分析和元素分析对PAAm-g-GaG共聚物进行了表征。结果表明,随着戊二醛浓度和RCM厚度的增加,药物渗透率降低;随着施加电流强度从2 ~ 8 mA的增加,药物的渗透速率也随之增加。在直流电流的作用下,流入值增加了两倍。在有电刺激的情况下,药物的渗透性增加,在“关闭”电刺激时,药物的渗透性下降。皮肤组织病理学研究证实了电刺激时皮肤结构的变化。电敏PAAm-g-GaG共聚物是一种有用的经皮给药生物材料。
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Electrically Triggered Transdermal Drug Delivery Utilizing Poly(Acrylamide)-graft-Guar Gum: Synthesis, Characterization and Formulation Development
The study aimed to prepare electrically-triggered transdermal drug delivery systems (ETDS) using electrically responsive polyacrylamide-graft-gaur gum (PAAm-g-GaG) copolymer. The PAAm-g-GaG copolymer was synthesized by adopting free radical polymerization grafting method. This PAAm-g-GaG copolymer hydrogel acts as a drug reservoir and blend films of Guar Gum (GaG) and Polyvinyl Alcohol (PVA) were included as Rate Controlling Membranes (RCM) in the system. The PAAm-g-GaG copolymer was characterized by FTIR, neutralization equivalent values, thermogravimetric analysis and elemental analysis. On the basis of results obtained, it is implicit that the drug permeation decreased with an increase in the concentration of glutaraldehyde and RCM thickness; while drug permeation rate was increased with increasing applied electric current strength from 2 to 8 mA. A two fold increase in flux values was observed with the application of DC electric current. An increase in drug permeation was witnessed under on condition of electric stimulus and permeation was decreased when electric stimulus was "off". The skin histopathology study confirmed the changes in skin structure when electrical stimulus was applied. The electrically-sensitive PAAm-g-GaG copolymer is a useful biomaterial for transdermal drug delivery application.
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