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Femtosecond laser modification of living neuronal network
Authors:Chie Hosokawa  Suguru N. Kudoh  Ai Kiyohara  Yoichiroh Hosokawa  Kazunori Okano  Hiroshi Masuhara  Takahisa Taguchi
Affiliation:1.Research Institute for Cell Engineering,National Institute of Advanced Industrial Science and Technology (AIST),Osaka,Japan;2.PRESTO,Japan Science and Technology Agency,Saitama,Japan;3.Graduate School of Science,Osaka University,Osaka,Japan;4.Hamano Life Science Research Foundation,Kobe,Japan
Abstract:An all-wet femtosecond laser microprocessing technique was utilized for patterning and cutting functional network of living neuronal cells on a multi-electrode dish (MED). The neuronal cells cultured on a source substrate were transferred onto an electrode in a MED probe in solution by utilizing a femtosecond laser-induced impulsive force and a pattern of neuronal cells were formed on the MED probe. The cellular activity of the detached neurons was supported that neurites could be regenerated around the electrodes. As another processing method, the neurons stretching between electrodes were selectively cut by the direct femtosecond laser irradiation and the spontaneous electrical activity of the neuronal network was evaluated. While the spontaneous action potentials of neurons were synchronized before the cutting, the synchronization disappeared after the cutting, indicating that the neuronal network is locally disconnected by the laser cutting. The present method is applicable to artificial reconstruction of living neuronal network.
Keywords:  KeywordHeading"  >PACS 42.62.Be  87.19.Lj  52.38.Mf
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