School of Pharmacy, Aston University, Aston Triangle, Birmingham B4 7ET, UK.
School of Pharmacy, Aston University, Aston Triangle, Birmingham B4 7ET, UK.
Int J Pharm. 2024 Mar 25;653:123862. doi: 10.1016/j.ijpharm.2024.123862. Epub 2024 Feb 1.
Pharmaceutical three-dimensional printing (3DP) is now in its golden age. Recent years have seen a dramatic increase in the research in 3D printed pharmaceuticals due to their potential to deliver highly personalised medicines, thus revolutionising the way medicines are designed, manufactured, and dispensed. A particularly attractive 3DP technology used to manufacture medicines is stereolithography (SLA), which features key advantages in terms of printing resolution and compatibility with thermolabile drugs. Nevertheless, the enthusiasm for pharmaceutical SLA has not been followed by the introduction of novel excipients specifically designed for the fabrication of medicines; hence, the choice of biocompatible polymers and photoinitiators available is limited. This work provides an insight on how to maximise the usefulness of the limited materials available by evaluating how different formulation factors affect printability outcomes of SLA 3D printed medicines. 156 photopolymer formulations were systematically screened to evaluate the influence of factors including photoinitiator amount, photopolymer molecular size, and type and amount of liquid filler on the printability outcomes. Collectively, these factors were found highly influential in modulating the print quality of the final dosage forms. Findings provide enhanced understanding of formulation parameters informing the future of SLA 3D printed medicines and the personalised medicines revolution.
制药三维打印(3DP)正处于黄金时代。近年来,由于 3D 打印药物具有提供高度个性化药物的潜力,从而彻底改变了药物设计、制造和配药的方式,因此对 3D 打印药物的研究急剧增加。一种用于制造药物的特别有吸引力的 3DP 技术是立体光刻(SLA),它在打印分辨率和与热敏药物的兼容性方面具有关键优势。然而,人们对制药 SLA 的热情并没有带来专门为制造药物设计的新型赋形剂的引入;因此,可用的生物相容性聚合物和光引发剂的选择是有限的。这项工作通过评估不同配方因素对 SLA 3D 打印药物可印刷性结果的影响,深入了解如何通过评估不同配方因素对 SLA 3D 打印药物的可印刷性结果的影响,最大限度地利用有限的可用材料的有用性。系统筛选了 156 种光聚合配方,以评估包括光引发剂用量、光聚合分子大小、液体填充剂的类型和用量在内的因素对可印刷性结果的影响。总的来说,这些因素被发现对最终剂型的打印质量具有高度的影响力。研究结果提供了对配方参数的深入了解,为 SLA 3D 打印药物和个性化药物革命的未来提供信息。