Publication | Open Access
Microfluidic chip fabrication and performance analysis of 3D printed material for use in microfluidic nucleic acid amplification applications
16
Citations
51
References
2021
Year
EngineeringAnalytical MicrosystemsBiofabricationBiomedical EngineeringQuantitative PcrMicroscale SystemPrinted MaterialMicrofluidicsProjection SlaBioprintingMicrofluidic Chip Fabrication3D Bioprinting3D PrintingBiomanufacturingPerformance AnalysisMicrofabricationPolymer ScienceLab-on-a-chipBiomemsMedicineAbstract Additive Manufacturing
Abstract Additive manufacturing for microfluidics shows potential to boost research and development in research biology and molecular diagnostics. This paper reports on novel process and material optimisation techniques in the creation of a monolithic microfluidic chip geometry for polymerase chain reaction (PCR) thermocycling using stereolithography (SLA). A two-stage printing protocol with projection SLA is assessed in printing disposable oscillating-flow microfluidic cartridges for PCR. Print performance was characterized in terms of critical channel dimensions and surface quality. Post-treatment with ultraviolet light and solvent washes was shown to reduce PCR inhibiting residuals and facilitate the reaction, indicating material compatibility for fluidic and milli-fluidic PCR architectures. Residuals leaching from the polymer were shown via quantitative PCR that interact with enzyme activity. Passivation of channel surfaces with a polyethylene glycol and a silane static coating reduced the leaching interface improving overall PCR efficiency. The discussed protocols can serve as a low-cost alternative to clean-room and micromachined microfluidic prototypes for various microfluidic concepts.
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