Digital Light Processing Based Three-dimensional Printing for Medical Applications
Journal Title: International Journal of Bioprinting - Year 2020, Vol 6, Issue 1
Abstract
An additive manufacturing technology based on projection light, digital light processing (DLP), three-dimensional (3D) printing, has been widely applied in the field of medical products production and development. The precision projection light, reflected by a digital micromirror device of million pixels instead of one focused point, provides this technology both printing accuracy and printing speed. In particular, this printing technology provides a relatively mild condition to cells due to its non-direct contact. This review introduces the DLP-based 3D printing technology and its applications in medicine, including precise medical devices, functionalized artificial tissues, and specific drug delivery systems. The products are particularly discussed for their significance in medicine. This review indicates that the DLP-based 3D printing technology provides a potential tool for biological research and clinical medicine. While, it is faced to the challenges of scale-up of its usage and waiting period of regulatory approval.
Authors and Affiliations
Jiumeng Zhang, Qipeng Hu, Shuai Wang, Jie Tao, Maling Gou
3D bioprinting processes: A perspective on classification and terminology
This article aims to provide further classification of cell-compatible bioprinting processes and examine the concept of 3D bioprinting within the general technology field of 3D printing. These technologies are categorize...
Recent cell printing systems for tissue engineering
Three-dimensional (3D) printing in tissue engineering has been studied for the bio mimicry of the structures of human tissues and organs. Now it is being applied to 3D cell printing, which can position cells and biomate...
Book review – Standards, quality control, and measurement sciences in 3D printing and additive manufacturing
There is a gap between 3D printing’s fast pace of development and the acceptance of 3D printing technologies by other industries and applications. This hesitation comes mostly from unanswered questions about the consiste...
Preparation and printability of ultrashort self-assembling peptide nanoparticles
Nanoparticles (NPs) have left their mark on the field of bioengineering. Fabricated from metallic, magnetic, and metal oxide materials, their applications include drug delivery, bioimaging, and cell labeling. However, as...
A new design of an electrospinning apparatus for tissue engineering applications
The electrospinning technique is being widely explored in the biomedical field due to its simplicity to produce meshes and its capacity to mimic the micro-nanostructure of the natural extracellular matrix. For skin tissu...