Logo image
Cell culturing in electropolymerized hydrogel multi-layer nets fabricated in an electrokinetics microfluidic chip
Conference paper

Cell culturing in electropolymerized hydrogel multi-layer nets fabricated in an electrokinetics microfluidic chip

Pan Li, Lianqing Liu, Yuzhao Zhang, Haibo Yu, Gwo-Bin Lee, Yuechao Wang and Wen Jung Li
22nd International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 2018, Vol.1, pp.252-255
2018

Abstract

3D cell culture;3D hydrogel;Bio-fabrication;Optically-induced electrokinetics Chemistry (all) Bioengineering Chemical Engineering (miscellaneous) Control and Systems Engineering

Three-dimensional (3D) micro-engineered hydrogel biomaterials incorporating cells is a promising in vitro bio-model for tissue engineering. We report a visible-light induced layer-by-layer microfabrication method for large scale tunable 3D hydrogel network and its application in 3D cell culturing and modulation. This optically induced electropolymerization method was previously reported for two-dimensional (2D) hydrogel patterning and cell patterning. Here, we improved the fabrication process by designing a series of switching “digitally-controlled photomasks” to continuously fabricate multi-layered 3D net-like hydrogel scaffolds with tunable pores and gaps. Cell spreading and migrating behaviors were further investigated after incorporating them into this biocompatible hydrogel scaffold. This method may shine some light on the in vitro reconstruction of physiologically related bio-microenvironments.

Metrics

1 Record Views

Details

Logo image