Nakamura Koji, Morishita Mariko, Ehara Junpei, Onuki Yoshinori, Yamagata Tetsuo, Kamei Noriyasu, Lowman Anthony M, Peppas Nicholaos A, Takayma Kozo
Department of Pharmaceutics, Hoshi University, 2-4-41 Ebara, Shinagawa, Tokyo 142-8501, Japan.
Int J Pharm. 2008 Apr 16;354(1-2):135-42. doi: 10.1016/j.ijpharm.2007.10.050. Epub 2007 Nov 9.
This work aimed to clarify the relationship between polymer function and insulin absorption, and to evaluate the optimized preparative formulation predicted from this relationship. Insulin-loaded polymer (ILP) carrier systems were prepared following a two-factor composite second-order spherical experimental design. To investigate the polymer function, we evaluated its insulin release, bioadhesiveness, and protective effect. Each ILP was administered intestinally, and glucose reduction was monitored as the pharmacological effect. Based on these data, an optimized formulation was predicted and how the polymer function affects insulin absorption was clarified by multivariate spline (MVS) interpolation. A greater pharmacological effect was apparent in ILPs with a smaller particle size and loaded with more insulin. The pharmacological effect predicted by MVS after the administration of ILP made under optimized preparative conditions was almost identical to the observed effect. Moreover, MVS clarified the relationship between the polymer function and the pharmacological effect. These results supported that MVS can be an effective tool with which to approximate the relationship between the function of a dosage form and its absorption, and to explore the optimized preparative conditions.
这项工作旨在阐明聚合物功能与胰岛素吸收之间的关系,并评估根据这种关系预测的优化制备配方。按照二因素复合二阶球形实验设计制备了载胰岛素聚合物(ILP)载体系统。为了研究聚合物功能,我们评估了其胰岛素释放、生物黏附性和保护作用。每种ILP经肠道给药,并监测血糖降低情况作为药理效应。基于这些数据,预测了优化配方,并通过多元样条(MVS)插值阐明了聚合物功能如何影响胰岛素吸收。在粒径较小且载有更多胰岛素的ILP中,明显具有更大的药理效应。在优化制备条件下制备的ILP给药后,MVS预测的药理效应与观察到的效应几乎相同。此外,MVS阐明了聚合物功能与药理效应之间的关系。这些结果支持MVS可以成为一种有效的工具,用于近似剂型功能与其吸收之间的关系,并探索优化的制备条件。