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Fabrication of Muco-Adhesive Oral Films by the 3D Printing of Hydroxypropyl Methylcellulose-Based Catechin-Loaded Formulations

机译:用羟丙基甲基纤维素的3D印刷制备粘膜粘附口膜膜加载的CateChin配方

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Pharmaceutical applications of three dimensional (3D) printing technology are increasing following the approval of 3D-printed tablets by the U.S. Food and Drug Administration. Semi-solid extrusion-type 3D printers are used to 3D print hydrogel- and paste-based materials. We previously developed tablet formulations for semi-solid extrusion-type 3D bioprinters. In the present study, we extended our study to the preparation of muco-adhesive oral film formulations to 3D bioprint mouth ulcer pharmaceuticals. We focused on hydroxypropyl methylcellulose (HPMC)-based catechin (model drug)-loaded hydrogel formulations and found that the viscosity of a hydrogel formulation is dependent on the HPMC concentration, and that viscosity is important for facile 3D printing. HPMC-based films were prepared using two different drying methods (air drying and freeze drying). The films exhibited different drug dissolution profiles, and increasing the amount of HPMC in the film delayed drug dissolution. The fabrication of HPMC-based catechin-loaded films with different shapes provides a model of individualized, on-demand pharmaceuticals. Our results support the flexible application of 3D bioprinters (semi-solid extrusion-type 3D printers) for preparing film formulations.
机译:在美国食品和药物管理局批准3D印刷片剂后,三维(3D)印刷技术的药物应用正在增加。半固体挤出型3D打印机用于3D印刷水凝胶和粘贴基材料。我们以前开发了半固体挤出型3D生物制剂的片剂配方。在本研究中,我们将我们的研究扩展到制备粘合剂口服胶片制剂到3D生物印章口腔溃疡药物。我们专注于基于羟丙基甲基纤维素(HPMC)的儿茶素(模型药物) - 载荷的水凝胶制剂,发现水凝胶制剂的粘度取决于HPMC浓度,并且该粘度对于容易的3D印刷是重要的。使用两种不同的干燥方法(空气干燥和冷冻干燥)制备基于HPMC的薄膜。薄膜表现出不同的药物溶解曲线,并增加薄膜延迟药物溶解中HPMC的量。具有不同形状的基于HPMC的CateChin的薄膜的制备提供了个性化的按需药物的模型。我们的研究结果支持3D BioPrinters(半固体挤出型3D打印机)的灵活应用来制备薄膜配方。

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