Cargando…

Output of Neurogliaform Cells to Various Neuron Types in the Human and Rat Cerebral Cortex

Neurogliaform cells in the rat elicit combined GABAA and GABAB receptor-mediated postsynaptic responses on cortical pyramidal cells and establish electrical synapses with various interneuron types. However, the involvement of GABAB receptors in postsynaptic effects of neurogliaform cells on other GA...

Descripción completa

Detalles Bibliográficos
Autores principales: Oláh, Szabolcs, Komlósi, Gergely, Szabadics, János, Varga, Csaba, Tóth, Éva, Barzó, Pál, Tamás, Gábor
Formato: Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2526278/
https://www.ncbi.nlm.nih.gov/pubmed/18946546
http://dx.doi.org/10.3389/neuro.04.004.2007
_version_ 1782158736131883008
author Oláh, Szabolcs
Komlósi, Gergely
Szabadics, János
Varga, Csaba
Tóth, Éva
Barzó, Pál
Tamás, Gábor
author_facet Oláh, Szabolcs
Komlósi, Gergely
Szabadics, János
Varga, Csaba
Tóth, Éva
Barzó, Pál
Tamás, Gábor
author_sort Oláh, Szabolcs
collection PubMed
description Neurogliaform cells in the rat elicit combined GABAA and GABAB receptor-mediated postsynaptic responses on cortical pyramidal cells and establish electrical synapses with various interneuron types. However, the involvement of GABAB receptors in postsynaptic effects of neurogliaform cells on other GABAergic interneurons is not clear. We measured the postsynaptic effects of neurogliaform cells in vitro applying simultaneous whole-cell recordings in human and rat cortex. Single action potentials of human neurogliaform cells evoked unitary IPSPs composed of GABAA and GABAB receptor-mediated components in various types of inteneuron and in pyramidal cells. Slow IPSPs were combined with homologous and heterologous electrical coupling between neurogliaform cells and several human interneuron types. In the rat, single action potentials in neurogliaform cells elicited GABAB receptor-mediated component in responses of neurogliaform, regular spiking, and fast spiking interneurons following the GABAA receptor-mediated component in postsynaptic responses. In conclusion, human and rat neurogliaform cells elicit slow IPSPs and reach GABAA and GABAB receptors on several interneuron types with a connection-specific involvement of GABAB receptors. The electrical synapses recorded between human neurogliaform cells and various interneuron types represent the first electrical synapses recorded in the human cortex.
format Text
id pubmed-2526278
institution National Center for Biotechnology Information
language English
publishDate 2007
publisher Frontiers Research Foundation
record_format MEDLINE/PubMed
spelling pubmed-25262782008-10-22 Output of Neurogliaform Cells to Various Neuron Types in the Human and Rat Cerebral Cortex Oláh, Szabolcs Komlósi, Gergely Szabadics, János Varga, Csaba Tóth, Éva Barzó, Pál Tamás, Gábor Front Neural Circuits Neuroscience Neurogliaform cells in the rat elicit combined GABAA and GABAB receptor-mediated postsynaptic responses on cortical pyramidal cells and establish electrical synapses with various interneuron types. However, the involvement of GABAB receptors in postsynaptic effects of neurogliaform cells on other GABAergic interneurons is not clear. We measured the postsynaptic effects of neurogliaform cells in vitro applying simultaneous whole-cell recordings in human and rat cortex. Single action potentials of human neurogliaform cells evoked unitary IPSPs composed of GABAA and GABAB receptor-mediated components in various types of inteneuron and in pyramidal cells. Slow IPSPs were combined with homologous and heterologous electrical coupling between neurogliaform cells and several human interneuron types. In the rat, single action potentials in neurogliaform cells elicited GABAB receptor-mediated component in responses of neurogliaform, regular spiking, and fast spiking interneurons following the GABAA receptor-mediated component in postsynaptic responses. In conclusion, human and rat neurogliaform cells elicit slow IPSPs and reach GABAA and GABAB receptors on several interneuron types with a connection-specific involvement of GABAB receptors. The electrical synapses recorded between human neurogliaform cells and various interneuron types represent the first electrical synapses recorded in the human cortex. Frontiers Research Foundation 2007-11-02 /pmc/articles/PMC2526278/ /pubmed/18946546 http://dx.doi.org/10.3389/neuro.04.004.2007 Text en Copyright: © 2007 Oláh, Komlósi, Szabadics, Varga, Tóth, Barzó, Tamás. http://www.frontiersin.org/licenseagreement This is an open-access article subject to an exclusive license agreement between the authors and the Frontiers Research Foundation, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are credited.
spellingShingle Neuroscience
Oláh, Szabolcs
Komlósi, Gergely
Szabadics, János
Varga, Csaba
Tóth, Éva
Barzó, Pál
Tamás, Gábor
Output of Neurogliaform Cells to Various Neuron Types in the Human and Rat Cerebral Cortex
title Output of Neurogliaform Cells to Various Neuron Types in the Human and Rat Cerebral Cortex
title_full Output of Neurogliaform Cells to Various Neuron Types in the Human and Rat Cerebral Cortex
title_fullStr Output of Neurogliaform Cells to Various Neuron Types in the Human and Rat Cerebral Cortex
title_full_unstemmed Output of Neurogliaform Cells to Various Neuron Types in the Human and Rat Cerebral Cortex
title_short Output of Neurogliaform Cells to Various Neuron Types in the Human and Rat Cerebral Cortex
title_sort output of neurogliaform cells to various neuron types in the human and rat cerebral cortex
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2526278/
https://www.ncbi.nlm.nih.gov/pubmed/18946546
http://dx.doi.org/10.3389/neuro.04.004.2007
work_keys_str_mv AT olahszabolcs outputofneurogliaformcellstovariousneurontypesinthehumanandratcerebralcortex
AT komlosigergely outputofneurogliaformcellstovariousneurontypesinthehumanandratcerebralcortex
AT szabadicsjanos outputofneurogliaformcellstovariousneurontypesinthehumanandratcerebralcortex
AT vargacsaba outputofneurogliaformcellstovariousneurontypesinthehumanandratcerebralcortex
AT totheva outputofneurogliaformcellstovariousneurontypesinthehumanandratcerebralcortex
AT barzopal outputofneurogliaformcellstovariousneurontypesinthehumanandratcerebralcortex
AT tamasgabor outputofneurogliaformcellstovariousneurontypesinthehumanandratcerebralcortex