Mapping current trends in 3D printing and the impact on the recent landscape of drug development research

Craig A. Russell, Harriet Hampshire
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Abstract

Three Dimensional (3D) printing within the pharmaceutical industry is rapidly developing and current trends within drug development include the 3D printing of oral dosage forms, implants, hydrogels and topical drug delivery systems. 3D printed dosage forms can be used to treat a range of conditions varying from cardiovascular disease to recovery from orthopaedic surgery and the prevention of infection. Compared to traditional manufacturing methods, 3D printing allows the precise spatial control and deposition of material as layers. This results in a large degree of printing flexibility and means that a variety of complex designs can be printed accurately. By controlling factors such as the type of polymer, drug load and surface area a variety of controlled release dosage formulations can be produced and application in personalised medicine holds promise. Multiple release oral dosage forms can also be printed as well as those containing more than one Active Pharmaceutical Ingredient (API) which addresses polypharmacy and should aid medical treatment. This review studies recent trends in 3D printing and drug development, and current drawbacks are examined to evaluate the future potential to manufacture dosage forms.
绘制3D打印的当前趋势以及对药物开发研究的最新影响
制药行业的三维(3D)打印正在迅速发展,目前药物开发的趋势包括口服剂型、植入物、水凝胶和局部给药系统的3D打印。3D打印的剂型可用于治疗从心血管疾病到骨科手术恢复和预防感染等一系列疾病。与传统的制造方法相比,3D打印允许精确的空间控制和分层沉积材料。这导致了很大程度的印刷灵活性,并意味着各种复杂的设计可以准确地印刷。通过控制诸如聚合物类型、药物负荷和表面积等因素,可以生产各种控释剂量制剂,并在个性化医疗中应用。多种释放口服剂型也可以打印,以及那些含有一种以上的活性药物成分(API),解决多药,应该有助于医疗。本综述研究了3D打印和药物开发的最新趋势,并检查了当前的缺点,以评估未来制造剂型的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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