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首页> 外文期刊>International Journal of Pharmaceutics >A tunable extruded 3D printing platform using thermo-sensitive pastes
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A tunable extruded 3D printing platform using thermo-sensitive pastes

机译:使用热敏浆料可调谐挤出的3D打印平台

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摘要

Extruded 3D printing is emerging as an attractive fabrication technology in the field of personalized oral medicines. The objective of this study was to develop a tunable extruded 3D printing platform based on thermo-sensitive gelatin pastes to meet the needs of achieving different drug release characteristics with flexible dosing and design. The printability and mechanisms of extrusion and deposition of the gelatin pastes were systematically studied. Ibuprofen and diclofenac sodium were used as model drugs for immediate- and sustained-release formulations, respectively. Following the optimization of formulation and process parameters, ibuprofen immediate-release formulations with different designs, and reservoir-type diclofenac sodium sustained-release formulations were printed. Target drug release patterns were successfully obtained for both model drugs. Rheological studies revealed that additives such as microcrystalline cellulose and hydroxypropyl methylcellulose can act as both thickeners and proppants of gelatin matrix. Furthermore, computational fluid dynamics simulation was used to visualize the printing process, and quantitatively analyze the influence of material viscosity, inlet velocity and nozzle diameter on the pressure and velocity of extrusion flow field. The present study demonstrated the great potential of extruded 3D printing technology using the thermo-sensitive gelatin paste platform for personalized oral medicines.
机译:挤出的3D印刷是在个性化口种药物领域的有吸引力的制造技术。本研究的目的是基于热敏明胶浆料开发可调谐挤出的3D印刷平台,以满足柔性给药和设计实现不同药物释放特性的需求。系统地研究了明胶糊的挤出和沉积的可印刷性和机制。布洛芬和双氯芬酸钠分别用作立即和缓释制剂的模型药物。在优化配方和工艺参数之后,印刷具有不同设计的布洛芬立即释放制剂和储层型双氯芬酸钠缓释制剂。针对两种模型药物成功获得靶药释放模式。流变研究表明,微晶纤维素和羟丙基甲基纤维素等添加剂可以作为明胶基质的增稠剂和支撑剂。此外,计算流体动力学模拟用于可视化印刷过程,并定量分析材料粘度,入口速度和喷嘴直径对挤出流场的压力和速度的影响。本研究表明,使用用于个性化口种药物的热敏明胶浆料平台挤出的3D印刷技术的巨大潜力。

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