A hybrid bioorganic interface for neuronal photoactivation

A key issue in the realization of retinal prosthetic devices is reliable transduction of information carried by light into specific patterns of electrical activity in visual information processing networks. Soft organic materials can be used to couple artificial sensors with neuronal tissues. Here,...

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Veröffentlicht in:Nature communications 2011-01, Vol.2 (1), p.166-166, Article 166
Hauptverfasser: Benfenati, Fabio, Lanzani, Guglielmo, Ghezzi, Diego, Antognazza, Maria Rosa, Dal Maschio, Marco, Lanzarini, Erica
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Sprache:eng
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Zusammenfassung:A key issue in the realization of retinal prosthetic devices is reliable transduction of information carried by light into specific patterns of electrical activity in visual information processing networks. Soft organic materials can be used to couple artificial sensors with neuronal tissues. Here, we interface a network of primary neurons with an organic blend. We show that primary neurons can be successfully grown onto the polymer layer without affecting the optoelectronic properties of the active material or the biological functionality of neuronal network. Moreover, action potentials can be triggered in a temporally reliable and spatially selective manner with short pulses of visible light. Our results may lead to new neuronal communication and photo manipulation techniques, thus paving way to the development of artificial retinas and other neuroprosthetic interfaces based on organic photodetectors. Interfacing neurons with artificial functional materials could aid the development of neurological prosthetic devices. Here, primary neurons are incorporated into a polymer layer without adversely affecting their properties; the advance may contribute to the development of artificial retinas.
ISSN:2041-1723
2041-1723
DOI:10.1038/ncomms1164