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高分散活性成分负载对固体剂型熔融层建模工艺链中各性能的影响

Influence of High, Disperse API Load on Properties along the Fused-Layer Modeling Process Chain of Solid Dosage Forms.

作者信息

Tidau Marius, Kwade Arno, Finke Jan Henrik

机构信息

Institute for Particle Technology, TU Braunschweig, Volkmaroder Str. 5, 38104 Braunschweig, Germany.

Center of Pharmaceutical Engineering, TU Braunschweig, Franz-Liszt-Str. 35A, 38106 Braunschweig, Germany.

出版信息

Pharmaceutics. 2019 Apr 22;11(4):194. doi: 10.3390/pharmaceutics11040194.

Abstract

In order to cope with the increasing number of multimorbid patients due to demographic changes, individualized polypill solutions must be developed. One promising tool is fused layer modeling (FLM) of dosage forms with patient-specific dose combinations and release individualization. As there are few approaches reported that systematically investigate the influence of high disperse active pharmaceutical ingredient (API) loads in filaments needed for FLM, this was the focus for the present study. Different filaments based on polyethylene oxide and hypromellose (HPMC) with different loads of theophylline as model API (up to 50 wt.%) were extruded with a twin-screw extruder and printed to dosage forms. Along the process chain, the following parameters were investigated: particle size and shape of theophylline; mechanical properties, microstructure, mass and content uniformity of filaments as well as dosage forms and the theophylline release from selected dosage forms. Especially for HPMC, increasing theophylline load enhanced the flexural strength of filaments whilst the FLM accuracy decreased inducing defects in microstructure. Theophylline load had no significant effect on the dissolution profile of HPMC-based dosage forms. Therefore, a thorough analysis of particle-induced effects is necessary to correlate mechanical properties of filaments, printability, and the dosage-and-release profile adjustment.

摘要

为应对因人口结构变化导致的多病共存患者数量增加的情况,必须开发个性化的复方制剂解决方案。一种有前景的工具是剂型的融合层建模(FLM),它能实现针对患者的剂量组合和释放个体化。由于很少有研究系统地探讨高分散活性药物成分(API)负载量对FLM所需长丝的影响,因此本研究聚焦于此。以聚环氧乙烷和羟丙甲纤维素(HPMC)为基础,以不同负载量的茶碱作为模型API(最高达50 wt.%),通过双螺杆挤出机挤出长丝并打印成剂型。在整个工艺链中,研究了以下参数:茶碱的粒径和形状;长丝以及剂型的机械性能、微观结构、质量和含量均匀性,以及所选剂型中茶碱的释放情况。特别是对于HPMC,增加茶碱负载量会提高长丝的弯曲强度,而FLM精度会降低并导致微观结构出现缺陷。茶碱负载量对基于HPMC的剂型的溶出曲线没有显著影响。因此,有必要对颗粒诱导效应进行全面分析,以关联长丝的机械性能、可打印性以及剂量和释放曲线调整。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97a1/6523638/3b8f0da5b87a/pharmaceutics-11-00194-g001.jpg

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