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January 1, 2010Lab on a Chip471 citations

Three-dimensional photopatterning of hydrogels using stereolithography for long-term cell encapsulation

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VCVincent ChanPZPınar ZorlutunaJJJae Hyun Jeong

Key Points

  • This research aims to explore the fabrication of cell-encapsulated hydrogels with improved mechanical properties and long-term cell viability.
  • Fabricated hydrogels from photopolymerizable PEGDA using stereolithography techniques.
  • Evaluated swelling and mechanical properties across a range of molecular weights (700 to 10,000 Da).
  • Measured cell viability and proliferation using an MTS assay over a 14-day period.
  • Cell viability improved as molecular weight of PEGDA hydrogels increased (p<0.05).
  • Inclusion of RGDS peptides resulted in enhanced cell proliferation and spreading compared to pristine hydrogels (p<0.01).
  • Successfully demonstrated multi-layer 3D cell patterning with different cell types and material compositions.

Abstract

Cell-encapsulated hydrogels with complex three-dimensional (3D) structures were fabricated from photopolymerizable poly(ethylene glycol) diacrylate (PEGDA) using modified 'top-down' and 'bottoms-up' versions of a commercially available stereolithography apparatus (SLA). Swelling and mechanical properties were measured for PEGDA hydrogels with molecular weights (M(w)) ranging from 700 to 10 000 Daltons (Da). Long-term viability of encapsulated NIH/3T3 cells was quantitatively evaluated using an MTS assay and shown to improve over 14 days by increasing the M(w) of the hydrogels. Addition of adhesive RGDS peptide sequences resulted in increased cell viability, proliferation, and spreading compared to pristine PEG hydrogels of the same M(w). Spatial 3D layer-by-layer cell patterning was successfully demonstrated, and the feasibility of depositing multiple cell types and material compositions into distinct layers was established.

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Cite This Study

Chan et al. (2010) studied this question.

synapsesocial.com/papers/6a12d1ee83732aa7db9e5f0ehttps://doi.org/10.1039/c004285d
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