Alhnan Mohamed A, Okwuosa Tochukwu C, Sadia Muzna, Wan Ka-Wai, Ahmed Waqar, Arafat Basel
School of Pharmacy and Biomedical Sciences, University of Central Lancashire, Preston, PR1 2HE, Lancashire, UK.
School of Medicine, University of Central Lancashire, Preston, Lancashire, UK.
Pharm Res. 2016 Aug;33(8):1817-32. doi: 10.1007/s11095-016-1933-1. Epub 2016 May 18.
The recent introduction of the first FDA approved 3D-printed drug has fuelled interest in 3D printing technology, which is set to revolutionize healthcare. Since its initial use, this rapid prototyping (RP) technology has evolved to such an extent that it is currently being used in a wide range of applications including in tissue engineering, dentistry, construction, automotive and aerospace. However, in the pharmaceutical industry this technology is still in its infancy and its potential yet to be fully explored. This paper presents various 3D printing technologies such as stereolithographic, powder based, selective laser sintering, fused deposition modelling and semi-solid extrusion 3D printing. It also provides a comprehensive review of previous attempts at using 3D printing technologies on the manufacturing dosage forms with a particular focus on oral tablets. Their advantages particularly with adaptability in the pharmaceutical field have been highlighted, which enables the preparation of dosage forms with complex designs and geometries, multiple actives and tailored release profiles. An insight into the technical challenges facing the different 3D printing technologies such as the formulation and processing parameters is provided. Light is also shed on the different regulatory challenges that need to be overcome for 3D printing to fulfil its real potential in the pharmaceutical industry.
美国食品药品监督管理局(FDA)批准的首款3D打印药物最近问世,这激发了人们对3D打印技术的兴趣,该技术必将给医疗保健领域带来变革。自首次使用以来,这种快速成型(RP)技术已经发展到目前被广泛应用于包括组织工程、牙科、建筑、汽车和航空航天等众多领域。然而,在制药行业,这项技术仍处于起步阶段,其潜力尚未得到充分挖掘。本文介绍了各种3D打印技术,如立体光刻、粉末基、选择性激光烧结、熔融沉积建模和半固态挤出3D打印。本文还全面回顾了以往尝试使用3D打印技术制造剂型的情况,特别关注口服片剂。文中强调了它们的优势,尤其是在制药领域的适应性,这使得制备具有复杂设计和几何形状、多种活性成分以及定制释放曲线的剂型成为可能。本文还深入探讨了不同3D打印技术面临的技术挑战,如配方和加工参数。同时也阐述了3D打印要在制药行业充分发挥其真正潜力所需克服的不同监管挑战。