ICGM, Univ Montpellier, CNRS, ENSCM, Montpellier, France; Department of Pharmacy, Nîmes University Hospital, Nimes, France.
ICGM, Univ Montpellier, CNRS, ENSCM, Montpellier, France.
J Control Release. 2021 Feb 10;330:821-841. doi: 10.1016/j.jconrel.2020.10.056. Epub 2020 Oct 29.
Over the last few years, conventional medicine has been increasingly moving towards precision medicine. Today, the production of oral pharmaceutical forms tailored to patients is not achievable by traditional industrial means. A promising solution to customize oral drug delivery has been found in the utilization of 3D Printing and in particular Fused Deposition Modeling (FDM). Thus, the aim of this systematic literature review is to provide a synthesis on the production of pharmaceutical solid oral forms using FDM technology. In total, 72 relevant articles have been identified via two well-known scientific databases (PubMed and ScienceDirect). Overall, three different FDM methods have been reported: "Impregnation-FDM", "Hot Melt Extrusion coupled with FDM" and "Print-fill", which yielded to the formulation of thermoplastic polymers used as main component, five families of other excipients playing different functional roles and 47 active ingredients. Solutions are underway to overcome the high printing temperatures, which was the initial brake on to use thermosensitive ingredients with this technology. Also, the moisture sensitivity shown by a large number of prints in preliminary storage studies is highlighted. FDM seems to be especially fitted for the treatment of rare diseases, and particular populations requiring tailored doses or release kinetics. For future use of FDM in clinical trials, an implication of health regulatory agencies would be necessary. Hence, further efforts would likely be oriented to the use of a quality approach such as "Quality by Design" which could facilitate its approval by the authorities, and also be an aid to the development of this technology for manufacturers.
在过去的几年中,传统医学越来越倾向于精准医学。如今,通过传统的工业手段,无法生产出针对患者的定制口腔药物剂型。3D 打印,尤其是熔融沉积建模(FDM),为定制口腔药物输送提供了一个很有前途的解决方案。因此,本系统文献综述的目的是提供使用 FDM 技术生产药物固体制剂的综合概述。总共通过两个著名的科学数据库(PubMed 和 ScienceDirect)确定了 72 篇相关文章。总体而言,已经报道了三种不同的 FDM 方法:“浸渍-FDM”、“热熔挤出与 FDM 结合”和“打印填充”,这些方法用于热塑性聚合物的配方中,作为主要成分,其他五种辅料家族在不同的功能作用下,还有 47 种活性成分。正在寻找解决方案来克服高打印温度的问题,这是最初使用热敏成分的技术障碍。此外,大量打印品在初步储存研究中表现出的湿度敏感性也很突出。FDM 似乎特别适合治疗罕见疾病,以及需要定制剂量或释放动力学的特定人群。为了将来在临床试验中使用 FDM,需要健康监管机构的介入。因此,未来的努力可能会集中在使用质量方法,如“设计质量”,这可以促进其获得当局的批准,也可以帮助制造商开发这项技术。