Department of Pharmacokinetics and Pharmacodynamics, School of Pharmaceutical Sciences, University of Shizuoka, Suruga-ku, Shizuoka, Japan.
Int J Pharm. 2010 Oct 31;399(1-2):94-101. doi: 10.1016/j.ijpharm.2010.08.007. Epub 2010 Aug 10.
The aim of the present investigation is to develop solid dispersion (SD) formulations of cyclosporine A (CsA) for improving the oral bioavailability of CsA. Amorphous SDs of CsA with eight hydrophilic polymers were prepared with wet-mill employing zirconia beads. The physicochemical properties were characterized with a focus on morphology, crystallinity, thermal behavior, dissolution, and interaction of CsA with co-existing polymer. Although CsA molecules were found to be amorphous in all wet-milled formulations, some SD formulations failed to improve the dissolution. Of all CsA formulations, SD using polymer with HPC(SSL) exhibited the largest improvement in dissolution behavior. Pharmacokinetic profiling of orally dosed CsA in rats was carried out using UPLC/ESI-MS. After the oral administration of HPC(SSL)-based SD, enhanced CsA exposure was observed with increases in C(max) and AUC of ca. 5-fold, and the variation in AUC was ca. 40% less than that of amorphous CsA. Infrared spectroscopic studies suggested an interaction between CsA and HPC(SSL), as evidenced by the conformational transition of CsA. From the improved dissolution and pharmacokinetic data, the amorphous SD approach using wet-milling technology should lead to consistent and enhanced bioavailability, leading to an improved therapeutic potential of CsA.
本研究旨在制备环孢素 A(CsA)的固体分散体(SD)制剂,以提高其口服生物利用度。采用氧化锆珠湿磨法制备了 CsA 与八种亲水性聚合物的无定形 SD。重点对形态、结晶度、热行为、溶解以及 CsA 与共存聚合物的相互作用进行了理化性质的表征。虽然所有湿磨制剂中的 CsA 分子均为无定形,但有些 SD 制剂未能改善溶解性能。在所有 CsA 制剂中,使用 HPC(SSL)聚合物的 SD 显示出最大的溶解行为改善。采用 UPLC/ESI-MS 对大鼠口服给予 CsA 的药代动力学进行了分析。在口服 HPC(SSL)基 SD 后,观察到 CsA 暴露增加,C(max)和 AUC 增加约 5 倍,AUC 的变化比无定形 CsA 减少约 40%。红外光谱研究表明 CsA 与 HPC(SSL)之间存在相互作用,这可通过 CsA 的构象转变得到证明。从改善的溶解和药代动力学数据来看,采用湿磨技术的无定形 SD 方法应能导致一致且增强的生物利用度,从而提高 CsA 的治疗潜力。