Dipartimento di Scienze Farmaceutiche, Università degli Studi di Milano, Via G Colombo 71, 20133 Milan, Italy.
Int J Pharm. 2013 Jan 20;440(2):256-63. doi: 10.1016/j.ijpharm.2012.05.075. Epub 2012 Jun 9.
In order to adapt a previously described swellable/erodible pulsatile delivery system to a multiple-unit configuration, insoluble films with adequate permeability and flexibility were proposed for application to its functional hydroxypropyl methylcellulose (HPMC) layer. By slowing down the penetration of water into the system, such films would be expected to improve the relevant effectiveness in delaying the onset of release without possibly impacting on the mechanism involved. Free films of Eudragit(®)NE containing differing amounts (10-20%) of a superdisintegrant, i.e. Explotab(®)V17, Ac-Di-Sol(®), Kollidon(®)CL or Kollidon(®)CL-M, were prepared by spraying technique and evaluated for hydration, permeability and tensile properties. The hydration and permeability characteristics were enhanced by the addition of the superdisintegrants, generally as a function of their concentration. Explotab(®)V17 was shown particularly useful to increase the film permeability. Moreover, it exerted a minor impact on the advantageous tensile properties of the acrylic polymer, especially in the wet state. Based on these results and on a preliminary release study performed with two-layer devices, the Eudragit(®)NE film with Explotab(®)V17 at the highest investigated percentage was identified as a potential formulation candidate for being applied to HPMC-coated cores thus allowing the onset of release to effectively be delayed by coatings of reduced thickness.
为了使先前描述的可溶胀/可侵蚀脉冲释放系统适应多单位配置,提出了具有足够渗透性和柔韧性的不溶性薄膜,以应用于其功能性羟丙基甲基纤维素(HPMC)层。通过减缓水进入系统的速度,这些薄膜有望改善相关效果,延迟释放的开始,而不会影响所涉及的机制。含有不同量(10-20%)超级崩解剂,即 Explotab®V17、Ac-Di-Sol®、Kollidon®CL 或 Kollidon®CL-M 的 Eudragit®NE 游离薄膜通过喷涂技术制备,并评估其水合作用、渗透性和拉伸性能。通常,随着超级崩解剂浓度的增加,水合作用和渗透性特征得到增强。Explotab®V17 特别有助于提高薄膜的渗透性。此外,它对丙烯酸聚合物有利的拉伸性能的影响较小,尤其是在湿态下。基于这些结果和两层装置的初步释放研究,在最高研究百分比的情况下,含有 Explotab®V17 的 Eudragit®NE 薄膜被确定为潜在的候选配方,可应用于 HPMC 包衣核,从而允许通过减少厚度的包衣有效延迟释放的开始。