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Novel 3DP drug delivery devices with complex structures for linear drug release profiles

机译:具有用于线性药物释放曲线的复杂结构的新型3DP药物输送装置

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A novel drug delivery device (DDD) with complex structures for providing linear drug release profiles was designed and fabricated directly from the CAD models using three-dimensional printing technique (3DP) systems. The DDDs were in donut shape and had local concentration variations of the release-retarding polymer in their three regions. Environmental scanning electron microscopy clearly showed that the two dense regions, which had low porosity but high binding intensity, were symmetric around the middle loose region, which had high porosity but poor binding effect. All the DDDs exhibited standard-met mechanical performance. In vitro dissolution tests showed that up to 95% of the drug in the DDDs were released out in a linear manner before leveling off to completion when both ethyl cellulose (EC) and Eudragdit RS-100 solutions were taken as binder liquids. 3DP has advantages in fabrication of DDDs with complex design feature and can offer new strategies for the development of novel dosage forms with the desired release profiles.
机译:使用三维打印技术(3DP)系统直接从CAD模型设计和制造了具有复杂结构的新型药物输送装置(DDD),以提供线性药物释放曲线。 DDD为甜甜圈形状,在其三个区域中具有缓释聚合物的局部浓度变化。环境扫描电子显微镜清楚地表明,孔隙率低但结合强度高的两个致密区域在中间疏松区域周围对称,孔隙率高但结合效果差。所有DDD都表现出标准的机械性能。体外溶出度测试表明,当将乙基纤维素(EC)和Eudragdit RS-100溶液均用作粘合剂液体时,DDDs中高达95%的药物以线性方式释放出来,然后趋于平稳。 3DP在制造具有复杂设计特征的DDD方面具有优势,并且可以为开发具有所需释放曲线的新型剂型提供新的策略。

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