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使用具有紫外线光引发的喷墨技术进行片剂的3D打印。

3D printing of tablets using inkjet with UV photoinitiation.

作者信息

Clark Elizabeth A, Alexander Morgan R, Irvine Derek J, Roberts Clive J, Wallace Martin J, Sharpe Sonja, Yoo Jae, Hague Richard J M, Tuck Chris J, Wildman Ricky D

机构信息

Faculty of Engineering, The University of Nottingham, University Park, Nottingham, NG7 2RD, UK.

Advanced Materials and Healthcare Technologies, School of Pharmacy, The University of Nottingham, University Park, Nottingham, NG7 2RD, UK.

出版信息

Int J Pharm. 2017 Aug 30;529(1-2):523-530. doi: 10.1016/j.ijpharm.2017.06.085. Epub 2017 Jun 30.

Abstract

Additive manufacturing (AM) offers significant potential benefits in the field of drug delivery and pharmaceutical/medical device manufacture. Of AM processes, 3D inkjet printing enables precise deposition of a formulation, whilst offering the potential for significant scale up or scale out as a manufacturing platform. This work hypothesizes that suitable solvent based ink formulations can be developed that allow the production of solid dosage forms that meet the standards required for pharmaceutical tablets, whilst offering a platform for flexible and personalized manufacture. We demonstrate this using piezo-activated inkjetting to 3D print ropinirole hydrochloride. The tablets produced consist of a cross-linked poly(ethylene glycol diacrylate) (PEGDA) hydrogel matrix containing the drug, photoinitiated in a low oxygen environment using an aqueous solution of Irgacure 2959. At a Ropinirole HCl loading of 0.41mg, drug release from the tablet is shown to be Fickian. Raman and IR spectroscopy indicate a high degree of cross-linking and formation of an amorphous solid dispersion. This is the first publication of a UV inkjet 3D printed tablet. Consequently, this work opens the possibility for the translation of scalable, high precision and bespoke ink-jet based additive manufacturing to the pharmaceutical sector.

摘要

增材制造(AM)在药物递送以及制药/医疗器械制造领域具有显著的潜在优势。在增材制造工艺中,3D喷墨打印能够精确沉积制剂,同时作为一个制造平台具有显著扩大规模或扩大产量的潜力。这项工作假设可以开发出合适的溶剂基油墨配方,从而生产出符合制药片剂所需标准的固体剂型,同时提供一个灵活且个性化制造的平台。我们通过压电激活喷墨技术3D打印盐酸罗匹尼罗来证明这一点。所生产的片剂由含有药物的交联聚(乙二醇二丙烯酸酯)(PEGDA)水凝胶基质组成,在低氧环境中使用Irgacure 2959水溶液进行光引发。在盐酸罗匹尼罗载量为0.41mg时,片剂的药物释放显示为菲克扩散。拉曼光谱和红外光谱表明交联程度高且形成了无定形固体分散体。这是关于紫外喷墨3D打印片剂的首次发表。因此,这项工作为将可扩展、高精度和定制的喷墨基增材制造转化到制药领域开辟了可能性。

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