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水溶性添加剂的类型和水平对Surelease膜药物释放及表面和机械性能的影响

Influence of type and level of water-soluble additives on drug release and surface and mechanical properties of Surelease films.

作者信息

Rohera Bhagwan D, Parikh Nilesh H

机构信息

College of Pharmacy and Allied Health Professions, St. John's University, 8000 Utopia Parkway, Jamaica, NY 11439, USA.

出版信息

Pharm Dev Technol. 2002 Nov;7(4):421-32. doi: 10.1081/pdt-120015044.

DOI:10.1081/pdt-120015044
PMID:12503524
Abstract

Ethylcellulose in combination with water-soluble additives has been used in the development of microporous membrane-coated dosage forms. In the present study, application of three types of water-soluble additives, namely polyethylene glycols (PEG 400, 3350, and 8000), maltodextrins (Maltrin M150, M100, and M040 in the order of lower to higher average polymer size and molecular weight; dextrose equivalence 16.9, 11.1, and 4.8, respectively), and xylitol, as porosity modifiers in the films of a commercially available aqueous ethylcellulose dispersion (Surelease/E-7-7060 plasticized with glyceryl tricaprylate/caprate) was investigated. The effect of type and level of these additives on drug release characteristics and surface and mechanical properties of the polymeric films was studied. Each additive was incorporated at 20 and 30% levels in the polymeric dispersion based on its solids content. Ibuprofen tablets were coated using the polymeric dispersion with and without additive at 3% w/w coat level in a fluid-bed equipment. The coated tablets were evaluated for their drug release rate, coat reflectivity (gloss), Brinell hardness, and elastic modulus. Differential scanning calorimetric analysis of the films was performed to determine the physico-chemical changes in the applied film-coats. The rate of drug release, hence film porosity, was observed to be dependent on the type and level of the additive added. The molecular weight of the additive and its concentration in the polymeric dispersion had significant influence on the rate of drug release, hardness, and elasticity of the film-coats.

摘要

乙基纤维素与水溶性添加剂相结合已被用于微孔膜包衣剂型的研发。在本研究中,研究了三种水溶性添加剂,即聚乙二醇(PEG 400、3350和8000)、麦芽糊精(按平均聚合物尺寸和分子量由低到高的顺序依次为Maltrin M150、M100和M040;葡萄糖当量分别为16.9、11.1和4.8)以及木糖醇,作为市售乙基纤维素水分散体(用三辛酸甘油酯/癸酸甘油酯增塑的Surelease/E - 7 - 7060)薄膜中的孔隙率调节剂。研究了这些添加剂的类型和用量对聚合物薄膜的药物释放特性以及表面和机械性能的影响。基于其固体含量,每种添加剂以20%和30%的用量加入到聚合物分散体中。在流化床设备中,使用含和不含添加剂的聚合物分散体,以3% w/w的包衣水平对布洛芬片剂进行包衣。对包衣片剂的药物释放速率、包衣反射率(光泽度)、布氏硬度和弹性模量进行了评估。对薄膜进行差示扫描量热分析,以确定所施加薄膜包衣中的物理化学变化。观察到药物释放速率以及薄膜孔隙率取决于所添加添加剂的类型和用量。添加剂的分子量及其在聚合物分散体中的浓度对薄膜包衣的药物释放速率、硬度和弹性有显著影响。

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引用本文的文献

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Novel film modifiers to alter the physical properties of composite ethylcellulose films.用于改变复合乙基纤维素薄膜物理性质的新型薄膜改性剂。
Pharm Res. 2005 Mar;22(3):476-89. doi: 10.1007/s11095-004-1886-7.