Biomedical Materials · 2020 · 24 citations · 22 references
Tissue EngineeringPrinting TechnologyEngineeringMicroscopyBiomaterials DesignBiofabricationCell CultureBiomedical EngineeringPrinted ElectronicsBiomaterial ModelingLight MicroscopyMaterials ScienceBioprintingFunctional Tissue EngineeringCell Engineering3D Bioprinting3D PrintingMicrofabricationOptical Online MonitoringPrinting MaterialsCell BehaviourTranslucent AcrylateBiomemsMedicineBiomaterialsBiocompatible Material
Cells are very sensitive to their direct environment-they place high demands, for example, on ambient culture medium, adjacent cell types, and the properties of surrounding material parts. As a result, mechanical and physical material properties-such as surface roughness, swelling, electrostatic effects, etc-can all have a significant impact on cell behaviour. In addition, a material's composition also impacts whether that material meets biocompatibility requirements and can thus be considered for potential use in biomedical applications. The entry of high-resolution 3D printing technology in biotechnology has opened the door to individually-designed experiment-adaptable devices of almost unlimited complexity that can be manufactured within just a few hours. 3D printing materials are frequently lacking in the characteristics that make them suitable for biomedical applications, however. This study introduces a high-resolution polyacrylic 3D printing material as a potential alternative material for use in cultivation systems with indirect or direct contact to cells. Viability analyses, studies of apoptotic/necrotic cell death response, and surface studies all suggest that this material meets the requirements for (in vitro) biocompatibility, and has surface properties sufficient to permit uninhibited cell proliferation for cells in direct contact to the material. Moreover, the translucency of this material facilitates the type of optical monitoring required for performing experiments in a microfluidic environment, or for facilitating microscopic observations.
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John O’Brien, Ian D. Wilson, Terry C. Orton et al. · European Journal of Biochemistry · 2000 · 3.3K citations · Full text
Toxicology Testing, 'Resazurin Reduction Test, Toxicological Mechanism +18
Comparing Microfluidic Performance of Three-Dimensional (3D) Printing Platforms
Niall P. Macdonald, Joan M. Cabot, Petr Šmejkal et al. · Analytical Chemistry · 2017 · 402 citations · Full text
Iliyana Pepelanova, Katharina Kruppa, Thomas Scheper et al. · Bioengineering · 2018 · 386 citations · Full text