Product Development Laboratories, Central Pharmaceutical Research Institute, Japan Tobacco Inc., 1-1, Murasaki-cho Takatsuki, Osaka 569-1125, Japan; Graduate School of Pharmaceutical Sciences, Kumamoto University, 5-1 Oe-honmachi, Chuo-ku, Kumamoto 862-0973, Japan.
Graduate School of Pharmaceutical Sciences, Kumamoto University, 5-1 Oe-honmachi, Chuo-ku, Kumamoto 862-0973, Japan.
Int J Pharm. 2019 Jan 30;555:124-134. doi: 10.1016/j.ijpharm.2018.11.037. Epub 2018 Nov 15.
Polyvinyl alcohol (PVA) is considered to be an unsuitable carrier for hot-melt extrusion (HME) due to its low processability. In this study, we focused on a lowly hydrolyzed PVA (JR-05, 70.0-74.0% hydrolyzed, L-PVA) to evaluate the potential use of L-PVA as a carrier for HME using the Hoftyzer and Krevelen method and thermodynamic models. These evaluations for drug-polymer systems based on the Flory-Huggins theory predicted the physicochemical properties of the solubility and miscibility between indomethacin (IND) and PVAs. Prior to initiating formulation studies, construction of IND and PVA phase diagrams provided guidance for design process conditions in HME. On the basis of the results of the validation studies, a conventional grade of PVA (JP-05, 87.0-89.0% hydrolyzed) is unlikely to be suitable as a carrier of HME due to its low plasticity, resulting in rapid recrystallization in the evaluation of in vitro dissolution and stability caused by poor miscibility. On the other hand, JR-05 demonstrated high processability, leading to the preparation of miscible extrudate with a high stability and an excellent in vitro dissolution profile due to its unique micelle-forming capability. These findings suggest that L-PVA brings about new carrier options among non-ionic polymers for HME.
聚乙烯醇(PVA)因其加工性能低而被认为不适合热熔挤出(HME)。在本研究中,我们专注于低水解 PVA(JR-05,70.0-74.0%水解,L-PVA),使用 Hoftyzer 和 Krevelen 方法和热力学模型评估 L-PVA 作为 HME 载体的潜在用途。这些基于 Flory-Huggins 理论的药物-聚合物体系评价预测了吲哚美辛(IND)和 PVA 之间溶解度和混溶性的物理化学性质。在开始制剂研究之前,IND 和 PVA 相图的构建为 HME 中的设计工艺条件提供了指导。基于验证研究的结果,由于低塑性,常规等级的 PVA(JP-05,87.0-89.0%水解)不太可能适合作为 HME 的载体,导致在评估体外溶解和稳定性时快速重结晶,这是由于混溶性差。另一方面,JR-05 表现出高加工性能,由于其独特的胶束形成能力,导致可制备具有高稳定性和优异体外溶解性能的可混溶挤出物。这些发现表明,L-PVA 为 HME 带来了非离子聚合物的新载体选择。