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3D printing technology: A new approach for the fabrication of personalized and customized pharmaceuticals

3D打印 数字光处理 3d打印 熔融沉积模型 复配 纳米技术 食品药品监督管理局 计算机科学 材料科学 制造工程 医学 机械工程 工程类 人工智能 环境卫生 复合材料 投影机
作者
Muneeb Ullah,Abdul Wahab,Shahid Ullah Khan,Muhammad Naeem,Khalil ur Rehman,Haider Ali,Aziz Ullah,Amjad Khan,Nauman Rahim Khan,Waleed Y. Rizg,Khaled M. Hosny,Mohammed Alissa,Moutaz Y. Badr,Hala M. Alkhalidi
出处
期刊:European Polymer Journal [Elsevier BV]
卷期号:195: 112240-112240 被引量:44
标识
DOI:10.1016/j.eurpolymj.2023.112240
摘要

3DP is a computer-aided designing with the interesting innovation of prototyping layer-by-layer, creating 3D articles as digital blueprints to accomplish unequaled gracefulness, time protection, and extraordinary assembling ability of pharmaceutical dosage forms. 3D printing technology offers a novel approach for the fabrication of personalized and customized pharmaceuticals. This emerging field often referred to as "pharmaceutical 3D printing" or "3D-printed medications," has the potential to revolutionize the way medications are manufactured and administered. By using different method like binder jetting, solid-state extrusion (SSE), hot melt extrusion (HME), digital light processing (DLP), stereo lithography apparatus (SLA), selective laser sintering (SLS), vat polymerization, and fused deposition displaying (FDM). 3DP is a unique technology that was first conceptualized in 1986 by Charles Hull in field of pharmaceutical, medical. It is used to create on-demand, customizable, low volume/high volume, intricate yet more precise, and efficacious medications with desired geometries, hues, flavors, dosages, administration routes, and complex release profiles that has the capacity to improve compliance. In this review we focus on traditional methods of 3DP producing medicine, it does not require a large production area. Instead, medicines can be produced in a pharmacy, in a hospital or even in a patient's home by using specialized 3D printer that uses a specialized ink that contains a mixture of active ingredients and excipients. A significant accomplishment was made in this field in 2015 when Spritam, an epileptic medic, was the first Food and Drug Administration(FDA) approved 3D printed medicine. Moreover, 3DP has enormous potential so that it can be utilized in a vast scope of the medical field and robotics. In the future, 3DP technology the potential to revolutionize organ transplantation and tissue repair therapies. On-demand 3D production of medicines will also be cost-effective. 3DP plays a unique role in customized medicine or drugs, nutritional products, and organs, Researcher solve the problem facing during the integration of 3D printing with tissue engineering.
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