Literature DB >> 21345350

Stimulation of Ca²+ signals in neurons by electrically coupled electrolyte-oxide-semiconductor capacitors.

M Giacomello1, S Girardi, M Scorzeto, A Peruffo, M Maschietto, B Cozzi, S Vassanelli.   

Abstract

Electrolyte-oxide-semiconductor capacitors (EOSCs) are a class of microtransducers for extracellular electrical stimulation that have been successfully employed to activate voltage-dependent sodium channels at the neuronal soma to generate action potentials in vitro. In the present work, we report on their use to control Ca²+ signalling in cultured mammalian cells, including neurons. Evidence is provided that EOSC stimulation with voltage waveforms in the microsecond or nanosecond range activates two distinct Ca²+ pathways, either by triggering Ca²+ entry through the plasma membrane or its release from intracellular stores. Ca²+ signals were activated in non-neuronal and neuronal cell lines, CHO-K1 and SH-SY5Y. On this basis, stimulation was tailored to rat and bovine neurons to mimic physiological somatic Ca²+ transients evoked by glutamate. Being minimally invasive and easy to use, the new method represents a versatile complement to standard electrophysiology and imaging techniques for the investigation of Ca²+ signalling in dissociated primary neurons and cell lines.
Copyright © 2011 Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 21345350     DOI: 10.1016/j.jneumeth.2011.02.009

Source DB:  PubMed          Journal:  J Neurosci Methods        ISSN: 0165-0270            Impact factor:   2.390


  3 in total

1.  In situ electroporation of mammalian cells through SiO2 thin film capacitive microelectrodes.

Authors:  M Maschietto; M Dal Maschio; S Girardi; S Vassanelli
Journal:  Sci Rep       Date:  2021-07-23       Impact factor: 4.379

Review 2.  Overview of micro- and nano-technology tools for stem cell applications: micropatterned and microelectronic devices.

Authors:  Stefano Cagnin; Elisa Cimetta; Carlotta Guiducci; Paolo Martini; Gerolamo Lanfranchi
Journal:  Sensors (Basel)       Date:  2012-11-19       Impact factor: 3.576

Review 3.  Bovine Brain: An in vitro Translational Model in Developmental Neuroscience and Neurodegenerative Research.

Authors:  Antonella Peruffo; Bruno Cozzi
Journal:  Front Pediatr       Date:  2014-07-10       Impact factor: 3.418

  3 in total

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