Issue 11, 2022

Microfluidic electrode array chip for electrical stimulation-mediated axonal regeneration

Abstract

The precise manipulation of the neural stem cell (NSC)-derived neural differentiation is still challenging, and there is a technological barrier to regulate the axonal regeneration in a controlled manner. Here, we developed a microfluidic chip integrated with a microelectrode array as an axonal guidance platform. The microfluidic electrode array chip consisted of two compartments and a bridge microchannel that could isolate and guide the axons. We demonstrated that the NSCs were largely differentiated into neural cells as the electric field was applied to the microfluidic electrode array chip. We also confirmed the synergistic effects of the electrical stimulation (ES) and neurotrophic factor (NF) on axonal outgrowth. This microfluidic electrode array chip can serve as a central nervous system (CNS) model for axonal injury and regeneration. Therefore, it could be a potentially powerful tool for an in vitro model of the axonal regeneration.

Graphical abstract: Microfluidic electrode array chip for electrical stimulation-mediated axonal regeneration

Article information

Article type
Paper
Submitted
22 Dec 2021
Accepted
25 Mar 2022
First published
30 Mar 2022

Lab Chip, 2022,22, 2122-2130

Microfluidic electrode array chip for electrical stimulation-mediated axonal regeneration

J. W. Kim, Y. Y. Choi, S. Park, J. H. Ha, H. U. Lee, T. Kang, W. Sun and B. G. Chung, Lab Chip, 2022, 22, 2122 DOI: 10.1039/D1LC01158H

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