3D Printing Technology implementation for Personalized Medication

S. Kushwaha, Neelottama Kushwaha, Vishal Kumar
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Abstract

The unique properties of 3D printing technology, such as additive manufacturing, have been attributed to its growing demands in the pharmaceutical and medical device industries. In recent years, these technical approaches have gained in popularity as a cost-effective way to develop custom dose forms for tissue engineering and molecular diagnostics. A multimodal drug delivery system with faster release characteristics is being developed, which is useful in the case of personalized dose forms, according to an assessment of the existing situation. A review of 3D printing technology used throughout pharmaceutical applications was carried out. There are several kinds of 3D printers, and each one employs a unique technique to interact with different materials in diverse ways. In terms of material and application, the most crucial thing to keep in mind with 3D printing is that there is no one-size-fits-all solution. A light and heat source are sometimes used in 3D printers that employ powder materials to melt or fuse the layers of powder to create the desired shape. When using a 3D CAD (Computer Aided Design) file to make a 3D model or scanning a 3D object with a 3D scanner, the filament is heated by the extruder to form the layer and produce the desired shape
个性化医疗的3D打印技术实现
3D打印技术的独特特性,如增材制造,已归因于其在制药和医疗设备行业日益增长的需求。近年来,这些技术方法作为开发组织工程和分子诊断的定制剂量形式的一种经济有效的方法而受到欢迎。目前正在开发一种具有更快释放特性的多模式给药系统,根据对现有情况的评估,这在个性化剂型的情况下是有用的。回顾了3D打印技术在整个制药应用中的应用。3D打印机有好几种,每一种都采用一种独特的技术,以不同的方式与不同的材料相互作用。在材料和应用方面,3D打印最重要的一点是没有放之四海而皆准的解决方案。3D打印机有时会使用光源和热源,这些打印机使用粉末材料熔化或融合粉末层以创建所需的形状。当使用3D CAD(计算机辅助设计)文件制作3D模型或使用3D扫描仪扫描3D对象时,灯丝被挤出机加热以形成层并产生所需的形状
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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