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3D Printed Pellets (Miniprintlets): A Novel Multi-Drug Controlled Release Platform Technology

机译:3D打印粒料(小型印刷品):一种新颖的多药控释平台技术

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摘要

Selective laser sintering (SLS) is a single-step three-dimensional printing (3DP) process that can be leveraged to engineer a wide array of drug delivery systems. The aim of this work was to utilise SLS 3DP, for the first time, to produce small oral dosage forms with modified release properties. As such, paracetamol-loaded 3D printed multiparticulates, termed miniprintlets, were fabricated in 1 mm and 2 mm diameters. Despite their large surface area compared with a conventional monolithic tablet, the ethyl cellulose-based miniprintlets exhibited prolonged drug release patterns. The possibility of producing miniprintlets combining two drugs, namely paracetamol and ibuprofen, was also investigated. By varying the polymer, the dual miniprintlets were programmed to achieve customised drug release patterns, whereby one drug was released immediately from a Kollicoat Instant Release matrix, whilst the effect of the second drug was sustained over an extended time span using ethyl cellulose. Herein, this work has highlighted the versatility of SLS 3DP to fabricate small and intricate formulations containing multiple active pharmaceutical ingredients with distinct release properties.
机译:选择性激光烧结(SLS)是单步三维打印(3DP)工艺,可用于设计多种药物输送系统。这项工作的目的是第一次利用SLS 3DP来生产具有调释特性的小型口服剂型。这样,以1 mm和2 mm的直径制作了对乙酰氨基酚负载的3D打印多颗粒,称为微型打印。尽管与常规整体式片剂相比表面积较大,但基于乙基纤维素的微型打印片仍显示出延长的药物释放模式。还研究了生产结合两种药物即对乙酰氨基酚和布洛芬的微型打印纸的可能性。通过改变聚合物,对双小分子程序进行编程以实现定制的药物释放模式,从而立即从Kollicoat即时释放基质中释放一种药物,同时使用乙基纤维素在延长的时间范围内维持第二种药物的作用。在本文中,这项工作突出了SLS 3DP的多功能性,可制备包含多种具有不同释放特性的活性药物成分的小而复杂的制剂。

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