Analytical Chemistry · 2019 · 50 citations · 27 references
Tissue EngineeringOnline ExtractionEngineeringCell-laden Microsphere CultureBiofabricationOrgan-on-a-chipBiomedical EngineeringMultifunctional RegulationCancer EngineeringRegenerative MedicineMicroscale SystemMatrix BiologyMicrofluidicsCell-based Drug DeliveryHydrogel MicrospheresFunctional Tissue EngineeringCell EngineeringCell Biology3D BioprintingCellular BioengineeringMicrofluidic DeviceMicrofabricationLab-on-a-chipCell-laden Microsphere GenerationBiomemsMedicineExtracellular Matrix
Three-dimensional (3D) hydrogel microspheres have aroused increasing attention as an in vitro cell culture model. Yet the preservation of cells' original biological properties has been overlooked during model construction. Here we present an integrated microfluidic device to accomplish the overall process including cell-laden microsphere generation, online extraction, and dynamic-culture. The method extends the noninvasive and nonsuppression capabilities of the droplet preparation system and provides a constant microenvironment, which reduces intracellular oxidative stress damage and the accumulation of mitochondria. Compared to the conventional preparation method, the coculture model of tumor-endothelial construction on an integrated platform displays high-level angiogenic protein expression. We believe that this versatile and biocompatible platform will provide a more reliable analysis tool for tissue engineering and cancer therapy.
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Metre-long cell-laden microfibres exhibit tissue morphologies and functions
Hiroaki Onoe, Teru Okitsu, Akane Itou et al. · Nature Materials · 2013 · 840 citations
Designer emulsions using microfluidics
Rhutesh K. Shah, Ho Cheung Shum, Amy C. Rowat et al. · Materials Today · 2008 · 749 citations · Full text