Pharmaceutics International Inc., Hunt Valley, MD, USA.
AAPS PharmSciTech. 2012 Dec;13(4):1158-69. doi: 10.1208/s12249-012-9834-z. Epub 2012 Sep 8.
The objective of this research work was to evaluate Klucel™ hydroxypropylcellulose (HPC) EF and ELF polymers, for solubility enhancement as well as to address some of the disadvantages associated with solid dispersions. Ketoprofen (KPR), a Biopharmaceutics Classification System class II drug with poor solubility, was utilized as a model compound. Preliminary thermal studies were performed to confirm formation of a solid solution/dispersion of KPR in HPC matrix and also to establish processing conditions for hot-melt extrusion. Extrudates pelletized and filled into capsules exhibited a carrier-dependent release with ELF polymer exhibiting a faster release. Tablets compressed from milled extrudates exhibited rapid release owing to the increased surface area of the milled extrudate. Addition of mannitol (MNT) further enhanced the release by forming micro-pores and increasing the porosity of the extrudates. An optimized tablet formulation constituting KPR, MNT, and ELF in a 1:1:1 ratio exhibited 90% release in 15 min similar to a commercial capsule formulation. HPC polymers are non-ionic hydrophilic polymers that undergo polymer-chain-length-dependent solubilization and can be used to enhance solubility or dissolution rate of poorly soluble drugs. Dissolution/release rate could be tailored for rapid-release applications by selecting a suitable HPC polymer and altering the final dosage form. The release obtained from pellets was carrier-dependent and not drug-dependent, and hence, such a system can be effectively utilized to address solubility or precipitation issues with poorly soluble drugs in the gastrointestinal environment.
本研究工作的目的是评估 Klucel™羟丙基纤维素(HPC)EF 和 ELF 聚合物,以提高溶解度,并解决与固体分散体相关的一些缺点。酮洛芬(KPR)是一种生物药剂分类系统 II 类药物,溶解度差,用作模型化合物。进行了初步的热研究以确认 KPR 在 HPC 基质中的固溶/分散形成,并确定热熔挤出的加工条件。挤出物造粒并填充到胶囊中表现出载体依赖性释放,ELF 聚合物表现出更快的释放。由于研磨挤出物的表面积增加,从研磨挤出物压缩的片剂表现出快速释放。甘露醇(MNT)的加入通过形成微孔和增加挤出物的孔隙率进一步增强了释放。由 KPR、MNT 和 ELF 以 1:1:1 的比例组成的优化片剂配方在 15 分钟内释放了 90%,类似于商业胶囊配方。HPC 聚合物是非离子亲水聚合物,其经历与聚合物链长相关的溶胀,可以用于提高难溶性药物的溶解度或溶解速率。通过选择合适的 HPC 聚合物并改变最终剂型,可以调整溶解/释放速率以适应快速释放应用。从颗粒中获得的释放是载体依赖性的,而不是药物依赖性的,因此,此类系统可有效地用于解决胃肠道环境中难溶性药物的溶解度或沉淀问题。