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Hot-Melt 3D Extrusion for the Fabrication of Customizable Modified-Release Solid Dosage Forms

机译:热熔3D挤出用于制备可定制的改性释放固体剂型

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摘要

In this work, modified-release solid dosage forms were fabricated by adjusting geometrical properties of solid dosage forms through hot-melt 3D extrusion (3D HME). Using a 3D printer with air pressure driving HME system, solid dosage forms containing ibuprofen (IBF), polyvinyl pyrrolidone (PVP), and polyethylene glycol (PEG) were printed by simultaneous HME and 3D deposition. Printed solid dosage forms were evaluated for their physicochemical properties, dissolution rates, and floatable behavior. Results revealed that IBF content in the solid dosage form could be individualized by adjusting the volume of solid dosage form. IBF was dispersed as amorphous state with enhanced solubility and dissolution rate in a polymer solid dosage form matrix. Due to absence of a disintegrant, sustained release of IBF from printed solid dosage forms was observed in phosphate buffer at pH 6.8. The dissolution rate of IBF was dependent on geometric properties of the solid dosage form. The dissolution rate of IBF could be modified by merging two different geometries into one solid dosage form. In this study, the 3D HME process showed high reproducibility and accuracy for preparing dosage forms. API dosage and release profile were found to be customizable by modifying or combining 3D modeling.
机译:在这项工作中,通过调节通过热熔3D挤出(3D HME)调节固体剂型的几何性质来制造改性释放固体剂型。使用带有气压的3D打印机驱动HME系统,通过同时HME和3D沉积印刷含有布洛芬(IBF),聚乙烯吡咯烷酮(PVP),聚乙烯吡咯烷酮(PVP)和聚乙二醇(PEG)的固体剂型。评价印刷的固体剂型,用于其物理化学性质,溶解率和可浮动行为。结果表明,通过调节固体剂型的体积,可以使固体剂型中的IBF含量可以是个性化的。 IBF以聚合物固体剂型基质的增强溶解度和溶出速率分散为无定形状态。由于不存在崩解剂,在pH 6.8的磷酸盐缓冲液中观察到来自印刷固体剂型的持续释放IBF。 IBF的溶出速率取决于固体剂型的几何特性。通过将两个不同的几何形状合并成一种固体剂型,可以通过将IBF的溶出速率进行修饰。在这项研究中,3D HME过程显示了制备剂型的高再现性和准确性。发现API剂量和释放曲线通过修改或组合3D建模来定制。

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