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Heterogeneity and Diversity of Striatal GABAergic Interneurons

The canonical view of striatal GABAergic interneurons has evolved over several decades of neuroanatomical/neurochemical and electrophysiological studies. From the anatomical studies, three distinct GABAergic interneuronal subtypes are generally recognized. The best-studied subtype expresses the calc...

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Autores principales: Tepper, James M., Tecuapetla, Fatuel, Koós, Tibor, Ibáñez-Sandoval, Osvaldo
Formato: Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3016690/
https://www.ncbi.nlm.nih.gov/pubmed/21228905
http://dx.doi.org/10.3389/fnana.2010.00150
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author Tepper, James M.
Tecuapetla, Fatuel
Koós, Tibor
Ibáñez-Sandoval, Osvaldo
author_facet Tepper, James M.
Tecuapetla, Fatuel
Koós, Tibor
Ibáñez-Sandoval, Osvaldo
author_sort Tepper, James M.
collection PubMed
description The canonical view of striatal GABAergic interneurons has evolved over several decades of neuroanatomical/neurochemical and electrophysiological studies. From the anatomical studies, three distinct GABAergic interneuronal subtypes are generally recognized. The best-studied subtype expresses the calcium-binding protein, parvalbumin. The second best known interneuron type expresses a number of neuropeptides and enzymes, including neuropeptide Y, somatostatin, and nitric oxide synthase. The last GABAergic interneuron subtype expresses the calcium binding protein, calretinin. There is no overlap or co-localization of these three different sets of markers. The parvalbumin-immunoreactive GABAergic interneurons have been recorded in vitro and shown to exhibit a fast-spiking phenotype characterized by short duration action potentials with large and rapid spike AHPs. They often fire in a stuttering pattern of high frequency firing interrupted by periods of silence. They are capable of sustained firing rates of over 200 Hz. The NPY/SOM/NOS interneurons have been identified as PLTS cells, exhibiting very high input resistances, low threshold spike and prolonged plateau potentials in response to intracellular depolarization or excitatory synaptic stimulation. Thus far, no recordings from identified CR interneurons have been obtained. Recent advances in technological approaches, most notably the generation of several BAC transgenic mouse strains which express a fluorescent marker, enhanced green fluorescent protein, specifically and selectively only in neurons of a certain genetic makeup (e.g., parvalbumin-, neuropeptide Y-, or tyrosine hydroxylase-expressing neurons etc.) have led to the ability of electrophysiologists to visualize and patch specific neuron types in brain slices with epifluorescence illumination. This has led to a rapid expansion of the number of neurochemically and/or electrophysiologically identified interneuronal cell types in the striatum and elsewhere. This article will review the anatomy, neurochemistry, electrophysiology, synaptic connections, and function of the three “classic” striatal GABAergic interneurons as well as more recent data derived from in vitro recordings from BAC transgenic mice as well as recent in vivo data.
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spelling pubmed-30166902011-01-12 Heterogeneity and Diversity of Striatal GABAergic Interneurons Tepper, James M. Tecuapetla, Fatuel Koós, Tibor Ibáñez-Sandoval, Osvaldo Front Neuroanat Neuroscience The canonical view of striatal GABAergic interneurons has evolved over several decades of neuroanatomical/neurochemical and electrophysiological studies. From the anatomical studies, three distinct GABAergic interneuronal subtypes are generally recognized. The best-studied subtype expresses the calcium-binding protein, parvalbumin. The second best known interneuron type expresses a number of neuropeptides and enzymes, including neuropeptide Y, somatostatin, and nitric oxide synthase. The last GABAergic interneuron subtype expresses the calcium binding protein, calretinin. There is no overlap or co-localization of these three different sets of markers. The parvalbumin-immunoreactive GABAergic interneurons have been recorded in vitro and shown to exhibit a fast-spiking phenotype characterized by short duration action potentials with large and rapid spike AHPs. They often fire in a stuttering pattern of high frequency firing interrupted by periods of silence. They are capable of sustained firing rates of over 200 Hz. The NPY/SOM/NOS interneurons have been identified as PLTS cells, exhibiting very high input resistances, low threshold spike and prolonged plateau potentials in response to intracellular depolarization or excitatory synaptic stimulation. Thus far, no recordings from identified CR interneurons have been obtained. Recent advances in technological approaches, most notably the generation of several BAC transgenic mouse strains which express a fluorescent marker, enhanced green fluorescent protein, specifically and selectively only in neurons of a certain genetic makeup (e.g., parvalbumin-, neuropeptide Y-, or tyrosine hydroxylase-expressing neurons etc.) have led to the ability of electrophysiologists to visualize and patch specific neuron types in brain slices with epifluorescence illumination. This has led to a rapid expansion of the number of neurochemically and/or electrophysiologically identified interneuronal cell types in the striatum and elsewhere. This article will review the anatomy, neurochemistry, electrophysiology, synaptic connections, and function of the three “classic” striatal GABAergic interneurons as well as more recent data derived from in vitro recordings from BAC transgenic mice as well as recent in vivo data. Frontiers Research Foundation 2010-12-29 /pmc/articles/PMC3016690/ /pubmed/21228905 http://dx.doi.org/10.3389/fnana.2010.00150 Text en Copyright © 2010. Tepper, Tecuapetla, Koós and Ibáñez-Sandoval. 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
Tepper, James M.
Tecuapetla, Fatuel
Koós, Tibor
Ibáñez-Sandoval, Osvaldo
Heterogeneity and Diversity of Striatal GABAergic Interneurons
title Heterogeneity and Diversity of Striatal GABAergic Interneurons
title_full Heterogeneity and Diversity of Striatal GABAergic Interneurons
title_fullStr Heterogeneity and Diversity of Striatal GABAergic Interneurons
title_full_unstemmed Heterogeneity and Diversity of Striatal GABAergic Interneurons
title_short Heterogeneity and Diversity of Striatal GABAergic Interneurons
title_sort heterogeneity and diversity of striatal gabaergic interneurons
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3016690/
https://www.ncbi.nlm.nih.gov/pubmed/21228905
http://dx.doi.org/10.3389/fnana.2010.00150
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