iMed.ULisboa, Faculdade de Farmácia, Universidade de Lisboa, Lisboa, Portugal.
Laboratory of Pharmaceutical Technology, Ghent University, Ghent, Belgium.
Int J Pharm. 2023 Apr 25;637:122854. doi: 10.1016/j.ijpharm.2023.122854. Epub 2023 Mar 21.
The present work studied the influence of different formulation variables (defined also as factors), namely, different polymers (HPC EF, PVA and HPMC-AS LG), drugs with different water solubilities (paracetamol, hydrochlorothiazide and celecoxib) and drug loads (10 or 30 %) on their processability by HME and FDM. Both filaments and tablets were characterized for physic and chemical properties (DSC, XRPD, FTIR) and performance properties (drug content, in vitro drug release). Experiments were designed to highlight relationships between the 3 factors selected and the mechanical properties of filaments, tablet mass and dissolution profiles of the model drugs from printed tablets. While the combination of hydrochlorothiazide and HPMC-AS LG could not be extruded, the combination of paracetamol with HPC EF turned the filaments too ductile and not stiff enough hampering the process of printing. All other polymer and drug combinations could be successfully extruded and printed. Models reflected the influence of the solubility of the drug considered but not the drug load in formulations. The ranking of the drug release rates was in good agreement with their solubilities. Furthermore, PVA presenting the fastest swelling rate, promoted the fastest drugs' releases in comparison with the other polymers studied. Overall, the study enabled the identification of the key factors affecting the properties of printed tablets, with the proposal of a model that has valued the relative contribution of each factor to the overall performance of tablets.
本工作研究了不同配方变量(也定义为因素)对其热熔挤出和纤维挤出直接打印(FDM)工艺性能的影响,这些变量包括不同的聚合物(HPC EF、PVA 和 HPMC-AS LG)、具有不同水溶性的药物(对乙酰氨基酚、氢氯噻嗪和塞来昔布)和药物负载(10%或 30%)。对纤维和片剂的物理化学性质(DSC、XRPD、FTIR)和性能性质(药物含量、体外药物释放)进行了表征。实验设计旨在突出所选 3 个因素与纤维的机械性能、片剂的质量和打印片剂中模型药物的溶解曲线之间的关系。虽然氢氯噻嗪和 HPMC-AS LG 的组合不能挤出,但对乙酰氨基酚与 HPC EF 的组合使纤维过于柔韧,不够坚硬,从而阻碍了打印过程。所有其他聚合物和药物组合都可以成功挤出和打印。模型反映了所考虑药物的溶解度对其的影响,但没有反映配方中药物负载的影响。药物释放率的排序与它们的溶解度非常吻合。此外,与研究的其他聚合物相比,具有最快溶胀率的 PVA 促进了药物的最快释放。总的来说,该研究确定了影响打印片剂性能的关键因素,并提出了一个模型,评估了每个因素对片剂整体性能的相对贡献。