Advanced Pharmaceutics and Drug Delivery Laboratory, Leslie Dan Faculty of Pharmacy, University of Toronto, ON, Canada.
Patheon Inc., Toronto Region Operations (TRO), Mississauga, ON, Canada.
Eur J Pharm Biopharm. 2017 Nov;120:116-125. doi: 10.1016/j.ejpb.2017.08.014. Epub 2017 Sep 5.
Water-soluble polymers are often used as pore formers to tailor permeability of film-forming hydrophobic polymers on coated dosage forms. However, their addition to a coating formulation could significantly increase the viscosity thus making the coating process difficult. Moreover, the dissolution of pore formers after oral administration could compromise film integrity resulting in undesirable, inconsistent release profiles. Therefore, a non-leaching, pH-responsive nanoparticulate pore former is proposed herein to preserve film integrity and maintain pH-dependent permeability. Poly(methacrylic acid)-polysorbate 80-grafted-starch terpolymer nanoparticles (TPNs) were incorporated within an ethylcellulose (EC) film (TPN-EC) by casting or spray coating. TPNs at 10%wt (pore former level) only increased viscosity of EC coating suspension slightly while conventional pore formers increased the viscosity by 490-11,700%. Negligible leaching of TPNs led to superior mechanical properties of TPN-EC films compared to Eudragit® L-EC films. As pH increased from 1.2 to 6.8, TPN-EC films with 10% pore former level exhibited an 8-fold higher diltiazem permeability compared to Eudragit® L-EC films. The pH-dependent drug release kinetics of diltiazem HCl beads coated with TPN-EC films was tunable by adjusting the pore former level. These results suggest that the TPNs are promising pH-sensitive nanoparticulate pore formers in EC-coated dosage forms.
水溶性聚合物通常用作致孔剂,以调整成膜疏水性聚合物在包衣制剂中的渗透性。然而,它们的加入会显著增加涂层配方的粘度,从而使涂层过程变得困难。此外,口服给药后致孔剂的溶解会破坏薄膜的完整性,导致不理想的、不一致的释放曲线。因此,本文提出了一种非浸出的、pH 响应的纳米颗粒致孔剂,以保持薄膜的完整性并保持 pH 依赖性渗透性。聚(甲基丙烯酸)-聚山梨酯 80 接枝淀粉三嵌段共聚物纳米粒子(TPN)通过浇铸或喷涂包衣法掺入乙基纤维素(EC)膜中(TPN-EC)。TPN 含量为 10%wt(致孔剂水平)仅略微增加了 EC 涂层悬浮液的粘度,而传统致孔剂使粘度增加了 490-11700%。TPN 的轻微浸出导致 TPN-EC 薄膜的机械性能优于 Eudragit® L-EC 薄膜。当 pH 从 1.2 增加到 6.8 时,含有 10%致孔剂水平的 TPN-EC 薄膜与 Eudragit® L-EC 薄膜相比,地尔硫䓬的渗透系数增加了 8 倍。通过调整致孔剂水平,可调节包衣 TPN-EC 薄膜的地尔硫䓬 HCl 丸的 pH 依赖性药物释放动力学。这些结果表明,TPN 是 EC 包衣制剂中很有前途的 pH 敏感纳米颗粒致孔剂。