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用于制备具有控释特性的多单元漂浮药物递送系统(muFDDSs)的增塑聚合物薄膜包衣的表征。

Characterizations of plasticized polymeric film coatings for preparing multiple-unit floating drug delivery systems (muFDDSs) with controlled-release characteristics.

作者信息

Hung Sheng-Feng, Hsieh Chien-Ming, Chen Ying-Chen, Wang Yu-Chun, Ho Hsiu-O, Sheu Ming-Thau

机构信息

School of Pharmacy, College of Pharmacy, Taipei Medical University, Taipei, Taiwan.

School of Pharmacy, College of Pharmacy, Taipei Medical University, Taipei, Taiwan; Department of Cosmetic Science, Providence University, Taiwan Boulevard, Shalu, Taichung, Taiwan, ROC.

出版信息

PLoS One. 2014 Jun 26;9(6):e100321. doi: 10.1371/journal.pone.0100321. eCollection 2014.

Abstract

Effervescent multiple-unit floating drug delivery systems (muFDDSs) consisting of drug (lorsartan)- and effervescent (sodium bicarbonate)-containing pellets were characterized in this study. The mechanical properties (stress and strain at rupture, Young's modulus, and toughness) of these plasticized polymeric films of acrylic (Eudragit RS, RL, and NE) and cellulosic materials (ethyl cellulose (EC), and Surelease) were examined by a dynamic mechanical analyzer. Results demonstrated that polymeric films prepared from Surelease and EC were brittle with less elongation compared to acrylic films. Eudragit NE films were very flexible in both the dry and wet states. Because plasticizer leached from polymeric films during exposure to the aqueous medium, plasticization of wet Eudragit RS and RL films with 15% triethyl citrate (TEC) or diethyl phthalate (DEP) resulted in less elongation. DEP might be the plasticizer of choice among the plasticizers examined in this study for Eudragit RL to provide muFDDSs with a short time for all pellets to float (TPF) and a longer period of floating. Eudragit RL and RS at a 1∶1 ratio plasticized with 15% DEP were optimally selected as the coating membrane for the floating system. Although the release of losartan from the pellets was still too fast as a result of losartan being freely soluble in water, muFDDSs coated with Eudragit RL and RS at a 1∶1 ratio might have potential use for the sustained release of water-insoluble or the un-ionized form of drugs from gastroretentive drug delivery systems.

摘要

本研究对由含药物(氯沙坦)和泡腾剂(碳酸氢钠)的小丸组成的泡腾多单元漂浮药物递送系统(muFDDSs)进行了表征。通过动态力学分析仪检测了这些丙烯酸类(尤特奇RS、RL和NE)和纤维素类材料(乙基纤维素(EC)和Surelease)的增塑聚合物薄膜的力学性能(断裂应力和应变、杨氏模量和韧性)。结果表明,与丙烯酸类薄膜相比,由Surelease和EC制备的聚合物薄膜较脆,伸长率较低。尤特奇NE薄膜在干燥和湿润状态下都非常柔韧。由于在暴露于水性介质期间增塑剂从聚合物薄膜中渗出,用15%柠檬酸三乙酯(TEC)或邻苯二甲酸二乙酯(DEP)对湿润的尤特奇RS和RL薄膜进行增塑会导致伸长率降低。在本研究中检测的增塑剂中,DEP可能是尤特奇RL的首选增塑剂,以提供使所有小丸漂浮的时间(TPF)较短且漂浮时间较长的muFDDSs。以1∶1比例用15%DEP增塑的尤特奇RL和RS被最佳地选为漂浮系统的包衣膜。尽管由于氯沙坦可自由溶于水,小丸中氯沙坦的释放仍然太快,但以1∶1比例用尤特奇RL和RS包衣的muFDDSs可能有潜力用于从胃滞留药物递送系统中持续释放水不溶性或非离子化形式的药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7c8/4072683/495d69c81586/pone.0100321.g001.jpg

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