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Production of Drug Delivery Systems Using Fused Filament Fabrication: A Systematic Review

机译:使用熔融长丝加工生产药物递送系统:系统综述

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摘要

Fused filament fabrication (FFF) 3D printing technology is widely used in many fields. For almost a decade, medical researchers have been exploring the potential use of this technology for improving the healthcare sector. Advances in personalized medicine have been more achievable due to the applicability of producing drug delivery devices, which are explicitly designed based on patients’ needs. For the production of these devices, a filament—which is the feedstock for the FFF 3D printer—consists of a carrier polymer (or polymers) and a loaded active pharmaceutical ingredient (API). This systematic review of the literature investigates the most widely used approaches for producing drug-loaded filaments. It also focusses on several factors, such as the polymeric carrier and the drug, loading capacity and homogeneity, processing conditions, and the intended applications. This review concludes that the filament preparation method has a significant effect on both the drug homogeneity within the polymeric carrier and drug loading efficiency.
机译:熔融长丝制造(FFF)3D打印技术已广泛应用于许多领域。近十年来,医学研究人员一直在探索该技术在改善医疗保健领域中的潜在用途。由于生产药物输送设备的适用性,个性化医学的进步更加可实现,药物输送设备是根据患者需求明确设计的。为了生产这些设备,细丝(作为FFF 3D打印机的原料)由一种或多种载体聚合物和负载的活性药物成分(API)组成。该文献的系统综述研究了生产载药丝的最广泛使用的方法。它还集中在几个因素上,例如聚合物载体和药物,负载能力和均一性,加工条件和预期的应用。该综述得出结论,长丝制备方法对聚合物载体内的药物均质性和药物装载效率均具有显着影响。

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