Univ. Lille Nord de France, College of Pharmacy, Lille, France; INSERM U 1008, Controlled Drug Delivery Systems and Biomaterials, Lille, France.
Eur J Pharm Biopharm. 2013 Nov;85(3 Pt B):1250-8. doi: 10.1016/j.ejpb.2013.07.014. Epub 2013 Jul 25.
Recently, ethylcellulose/guar gum blends have been reported to provide ethanol-resistant drug release kinetics from coated dosage forms. This is because the ethanol insoluble guar gum effectively avoids undesired ethylcellulose dissolution in ethanol-rich bulk fluids. However, so far the importance of crucial formulation parameters, including the minimum amount of guar gum to be incorporated and the minimum required guar gum viscosity, remains unclear. The aim of this study was to identify the most important film coating properties, determining whether or not the resulting drug release kinetics is ethanol-resistant. Theophylline matrix cores were coated in a fluid bed with blends of the aqueous ethylcellulose dispersion "Aquacoat®ECD30" and guar gum. The polymer blend ratio, guar gum viscosity, and degree of dilution of the final coating dispersion were varied. Importantly, it was found that more than 5% guar gum (referred to the total polymer content) must be incorporated in the film coating and that the apparent viscosity of a 1% aqueous guar gum solution must be greater than 150 cP to provide ethanol-resistance. In contrast, the investigated degree of coating dispersion dilution was not found to be decisive for the ethanol sensitivity. Furthermore, all investigated formulations were long term stable, even upon open storage under stress conditions for 6 months.
最近,乙基纤维素/瓜尔胶混合物被报道可以为包衣剂型提供耐乙醇的药物释放动力学。这是因为乙醇不溶的瓜尔胶可以有效地避免在富含乙醇的大量流体中不希望的乙基纤维素溶解。然而,到目前为止,包括必须掺入的瓜尔胶最小量和所需的瓜尔胶粘度的最小量在内的关键制剂参数的重要性仍然不清楚。本研究的目的是确定最重要的薄膜包衣性质,以确定所得到的药物释放动力学是否耐乙醇。茶碱基质核在流化床中用水性乙基纤维素分散体“Aquacoat®ECD30”和瓜尔胶的混合物进行包衣。改变聚合物共混比、瓜尔胶粘度和最终涂层分散体的稀释度。重要的是,发现必须在薄膜包衣中掺入超过 5%(相对于总聚合物含量)的瓜尔胶,并且 1%的水性瓜尔胶溶液的表观粘度必须大于 150 cP 才能提供耐乙醇性。相比之下,所研究的涂层分散体稀释度对于乙醇敏感性没有发现是决定性的。此外,所有研究的制剂即使在开放储存条件下在应力下储存 6 个月也长期稳定。