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Updated: Mar 6, 2026

Gradient Strain Chip for Stimulating Cellular Behaviors in Cell-laden Hydrogel
Published on: August 8, 2017
Patterned and Gradient Conductive Hydrogel for Regulating Nerve Cell Behavior
Yu Shi1, Ying Zhang1, Jian Geng1
1State Key Laboratory of Digital Medical Engineering, Institute of Microphysiological Systems, School of Biological Science and Medical Engineering, Southeast University, Southeast University Road 2, Nanjing 210096, China.
Abstract:
Creating multifunctional hydrogel scaffolds that combine gradient conductivity with patterned morphologies to mimic the extracellular matrix and modulate neuronal behavior remains challenging. This study developed a conductive, morphology-gradient hydrogel using an electrophoresis-based strategy. A thermosensitive polyisocyanopeptide (PIC) hydrogel served as the matrix, while graphene oxide nanosheets (GO) migrated under an electric field, forming a continuous gradient. This gradient enabled spatially varying conductivity, microstructure, and fiber alignment. Adjusting field strength and electrode configuration allowed precise control over GO distribution and patterned morphologies. SH-SY5Y cells aligned along the gradient, with higher GO regions promoting greater cell circularity and smaller cell areas than low-GO regions and controls. This work provides new insights into designing programmable multigradient conductive hydrogels, holding strong potential for advancing neural tissue engineering.

