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PMID: 38648623 Published · ppublish English

Computational Fluid Dynamics (CFD) Analysis of Bioprinting.

Advanced healthcare materials ·Vol. 13 ·No. 20 ·2024-08-00

Fareez UNM, Naqvi SAA, Mahmud M, Temirel M

Abstract

Regenerative medicine has evolved with the rise of tissue engineering due to advancements in healthcare and technology. In recent years, bioprinting has been an upcoming approach to traditional tissue engineering practices, through the fabrication of functional tissue by its layer-by-layer deposition process. This overcomes challenges such as irregular cell distribution and limited cell density, and it can potentially address organ shortages, increasing transplant options. Bioprinting fully functional organs is a long stretch but the advancement is rapidly growing due to its precision and compatibility with complex geometries. Computational Fluid Dynamics (CFD), a carestone of computer-aided engineering, has been instrumental in assisting bioprinting research and development by cutting costs and saving time. CFD optimizes bioprinting by testing parameters such as shear stress, diffusivity, and cell viability, reducing repetitive experiments and aiding in material selection and bioprinter nozzle design. This review discusses the current application of CFD in bioprinting and its potential to enhance the technology that can contribute to the evolution of regenerative medicine.

Keywords
bioprinter bioprinting computation fluid dynamics (CFD) computational fluid dynamics analysis types of bioprinting
MeSH 主题词
Bioprinting/methods Hydrodynamics Humans Tissue Engineering/methods Regenerative Medicine/methods Printing, Three-Dimensional Animals Computer Simulation
Article Info
Journal
Advanced healthcare materials
Abbr.
Adv Healthc Mater
ISSN
2192-2659
Published
2024-08-00
Language
English
Country/Region
Germany
NLM ID
101581613
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