School of Pharmacy, The University of Queensland, Woolloongabba 4102, Australia.
School of Pharmacy, The University of Queensland, Woolloongabba 4102, Australia.
J Control Release. 2022 Nov;351:444-455. doi: 10.1016/j.jconrel.2022.09.032. Epub 2022 Sep 28.
3D printing in the pharmaceutical and healthcare settings is expanding rapidly, such as the rapid prototyping of orthotics, dental retainers, drug-loaded implants, and pharmaceutical solid oral dosage forms. Through 3D printing, we have the capability to precisely control dose, release kinetics, and several aesthetic features of dosage forms such as colour, shape, and texture. Additionally, polypills can be created with combinations of medications in one solid dosage form at completely customisable strengths that would be extremely difficult to obtain commercially. As the technology and formulations developed through 3D printing are expanding, the development of new hybrid materials to obtain superior formulations are also gaining momentum. In this review we collate data on the importance of developing hybrid formulations of polymers, drugs and excipients necessary to produce reliable and high-quality 3D printed dosage forms with a special emphasis on fused deposition modelling (FDM). FDM technology is one of the most widely used forms of 3D printing and has demonstrated compatibility with unique polymer-based hybrids to allow for enhanced drug delivery, protection of thermolabile drugs, modifiable release kinetics, and more. The data collated covers different categories of hybrids as well as the methods used to fabricate them, and their respective effects on the properties of 3D printed solid oral dosage forms. Therefore, this review will provide an overview of upcoming and emerging trends in pharmaceutical 3D printing formulation compositions.
3D 打印在制药和医疗保健领域的应用正在迅速扩展,例如用于快速制造矫形器、牙箍、载药植入物和药物固体制剂等。通过 3D 打印,我们能够精确控制剂量、释放动力学以及制剂的几个美学特征,如颜色、形状和质地。此外,还可以将多种药物组合在一个固体制剂中制成多丸剂,其剂量可以完全定制,强度也可以根据需要进行调整,这在商业上是极难实现的。随着 3D 打印技术和配方的不断发展,开发用于获得更优配方的新型混合材料也在迅速发展。在这篇综述中,我们收集了有关开发聚合物、药物和赋形剂的混合配方的重要数据,这些配方对于生产可靠和高质量的 3D 打印固体制剂非常重要,特别强调了熔融沉积建模(FDM)。FDM 技术是最广泛使用的 3D 打印形式之一,它已经证明与独特的基于聚合物的混合体兼容,从而可以增强药物传递、保护热敏药物、调整释放动力学等。所收集的数据涵盖了不同类别的混合体以及制造它们的方法,以及它们各自对 3D 打印固体制剂的性能的影响。因此,本文将概述药物 3D 打印配方组成的未来发展趋势。