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首页> 外文期刊>International Journal of Pharmaceutics >Hot-melt extruded filaments based on pharmaceutical grade polymers for 3D printing by fused deposition modeling
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Hot-melt extruded filaments based on pharmaceutical grade polymers for 3D printing by fused deposition modeling

机译:基于药物级聚合物的热熔挤出长丝通过融合沉积建模3D印刷

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摘要

Fused deposition modeling (FDM) is a 3D printing technique based on the deposition of successive layers of thermoplastic materials following their softening/melting. Such a technique holds huge potential for the manufacturing of pharmaceutical products and is currently under extensive investigation. Challenges in this field are mainly related to the paucity of adequate filaments composed of pharmaceutical grade materials, which are needed for feeding the FDM equipment. Accordingly, a number of polymers of common use in pharmaceutical formulation were evaluated as starting materials for fabrication via hot melt extrusion of filaments suitable for FDM processes. By using a twin-screw extruder, filaments based on insoluble (ethylcellulose, Eudragit (R) RL), promptly soluble (polyethylene oxide, Kollicoat (R) IR), enteric soluble (Eudragit (R) L, hydroxypropyl methylcellulose acetate succinate) and swellable/erodible (hydrophilic cellulose derivatives, polyvinyl alcohol, Soluplus (R)) polymers were successfully produced, and the possibility of employing them for printing 600 mu m thick disks was demonstrated. The behavior of disks as barriers when in contact with aqueous fluids was shown consistent with the functional application of the relevant polymeric components. The produced filaments were thus considered potentially suitable for printing capsules and coating layers for immediate or modified release, and, when loaded with active ingredients, any type of dosage forms. (C) 2016 Elsevier B.V. All rights reserved.
机译:熔融沉积建模(FDM)是一种基于在软化/熔化后连续的热塑性材料层沉积的3D打印技术。这种技术对药品制造具有巨大潜力,目前正在广泛调查。该领域的挑战主要与由药物级材料组成的足够长丝的缺乏有关,这是喂养FDM设备所需的。因此,评估药物制剂中常用的许多聚合物作为用于制造的原料,通过热熔挤出适于FDM方法的长丝。通过使用双螺杆挤出机,基于不溶性的细丝(乙基纤维素,Eudragit(R),迅速溶于(聚环氧乙烷,KollicoatIR),肠溶酶可溶性(Eudragit(R)L,羟丙基甲基纤维素乙酸酯)和成功地制备了可溶胀/可侵蚀的(亲水纤维素衍生物,聚乙烯醇,Soluplus(R))聚合物,并证明了使用它们用于印刷600μm厚盘的可能性。显示磁盘作为屏障当与含水流体接触时的屏障的行为一致地与相关聚合物组分的功能施加一致。因此,所生产的长丝认为可能适用于印刷胶囊和涂层,用于立即或修饰的释放,并且在装载有活性成分时,任何类型的剂型。 (c)2016 Elsevier B.v.保留所有权利。

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