EventsMicromachines 2021 — 1st International Conference on Micromachines and Applications (ICMA2021)
Published
This submission belongs to the session S3. Micromachines for bio-medical applications of the event Micromachines 2021 — 1st International Conference on Micromachines and Applications (ICMA2021)
Published date
16 Apr, 2021
Citation
Yuhei Tanaka, Haruki Watanabe, Kenji Shimoda, Kenji Yasuda, Flexible microfabrication on a chip during cultivation for a neuronal network direction control using stepwise photo-thermal etching of an agarose architecture, in Proceedings of Micromachines 2021 — 1st International Conference on Micromachines and Applications (ICMA2021), 15 April–30 April 2021, MDPI: Basel, Switzerland, doi: 10.3390/Micromachines2021-09582
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Flexible microfabrication on a chip during cultivation for a neuronal network direction control using stepwise photo-thermal etching of an agarose architecture

Kenji Shimoda 1
1. Waseda University
Abstract

Control over spatial distributions and patterns of individual neurons and their neurites provides an essential tool for studying the meaning of neuronal network patterns. Moreover, the complete direction control of synaptic connections between cells in each neuronal network is also essential to investigate the detailed information on the relationship between the forward and feedback signaling among the cells. Here, we have developed a method for topographical control of the direction of synaptic connections within a living neuronal network using a new type of individual-cell-based on-chip cell-cultivation system with an agarose microfabrication technology. The advantages of this system include the ability to control positions and number of cultured cells as well as flexible control of the direction of elongation of axons and dendrites with stepwise melting of thin agarose layer coated on the cultivation chip with a focused infrared laser beam even during cultivation without any destructive damage on cells. Using this system, we succeeded in forming fully-direction controlled single-cell-based neuronal network from individual Rat hippocampal cells. In this meeting, we discuss the potential damage of heat to cells while stepwise melting of agarose and demonstrate the ability of our on-chip agarose microfabrication method for individual cell-based neural networks.

Keywords
Neuronal network
agarose microfabrication technology
non-destructive stepwise photo-thermal etching
neurite direction control
Poster
ICMA2021_Tanaka_et_al.pdf
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