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3D Bioprinting of In Vitro Models Using Hydrogel-Based Bioinks

Yeong‐Jin Choi, Honghyun Park, Dongheon Ha, Hui‐suk Yun, Hee‐Gyeong Yi, Hyungseok Lee

2021Polymers80 citationsDOIOpen Access PDF

Abstract

Coronavirus disease 2019 (COVID-19), which has recently emerged as a global pandemic, has caused a serious economic crisis due to the social disconnection and physical distancing in human society. To rapidly respond to the emergence of new diseases, a reliable in vitro model needs to be established expeditiously for the identification of appropriate therapeutic agents. Such models can be of great help in validating the pathological behavior of pathogens and therapeutic agents. Recently, in vitro models representing human organs and tissues and biological functions have been developed based on high-precision 3D bioprinting. In this paper, we delineate an in-depth assessment of the recently developed 3D bioprinting technology and bioinks. In particular, we discuss the latest achievements and future aspects of the use of 3D bioprinting for in vitro modeling.

Topics & Concepts

3D bioprintingCoronavirus disease 2019 (COVID-19)Identification (biology)Computer sciencePandemicBiochemical engineeringComputational biologyRisk analysis (engineering)MedicineDiseaseEngineeringBiologyBiomedical engineeringTissue engineeringPathologyBotanyInfectious disease (medical specialty)3D Printing in Biomedical ResearchInnovative Microfluidic and Catalytic Techniques InnovationCell Image Analysis Techniques
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