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Mesencephalic dopamine neurons interfacing the shell of nucleus accumbens and the dorsolateral striatum in the rat

Parallel corticostriatonigral circuits have been proposed that separately process motor, cognitive, and emotional‐motivational information. Functional integration requires that interactions exist between neurons participating in these circuits. This makes it imperative to study the complex anatomica...

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Autores principales: Wouterlood, Floris G., Engel, Angela, Daal, Mariah, Houwen, Gertjan, Meinderts, Aileen, Jordà Siquier, Tomàs, Beliën, Jeroen A. M., van Dongen, Yvette C., Scheel‐Krüger, Jørgen, Thierry, Anne‐Marie, Groenewegen, Henk J., Deniau, Jean‐Michel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6099426/
https://www.ncbi.nlm.nih.gov/pubmed/29696690
http://dx.doi.org/10.1002/jnr.24242
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author Wouterlood, Floris G.
Engel, Angela
Daal, Mariah
Houwen, Gertjan
Meinderts, Aileen
Jordà Siquier, Tomàs
Beliën, Jeroen A. M.
van Dongen, Yvette C.
Scheel‐Krüger, Jørgen
Thierry, Anne‐Marie
Groenewegen, Henk J.
Deniau, Jean‐Michel
author_facet Wouterlood, Floris G.
Engel, Angela
Daal, Mariah
Houwen, Gertjan
Meinderts, Aileen
Jordà Siquier, Tomàs
Beliën, Jeroen A. M.
van Dongen, Yvette C.
Scheel‐Krüger, Jørgen
Thierry, Anne‐Marie
Groenewegen, Henk J.
Deniau, Jean‐Michel
author_sort Wouterlood, Floris G.
collection PubMed
description Parallel corticostriatonigral circuits have been proposed that separately process motor, cognitive, and emotional‐motivational information. Functional integration requires that interactions exist between neurons participating in these circuits. This makes it imperative to study the complex anatomical substrate underlying corticostriatonigral circuits. It has previously been proposed that dopaminergic neurons in the ventral mesencephalon may play a role in this circuit interaction. Therefore, we studied in rats convergence of basal ganglia circuits by depositing an anterograde neuroanatomical tracer into the ventral striatum together with a retrograde fluorescent tracer ipsilaterally in the dorsolateral striatum. In the mesencephalon, using confocal microscopy, we looked for possible appositions of anterogradely labeled fibers and retrogradely labeled neurons, “enhancing” the latter via intracellular injection of Lucifer Yellow. Tyrosine hydroxylase (TH) immunofluorescence served to identify dopaminergic neurons. In neurophysiological experiments, we combined orthodromic stimulation in the medial ventral striatum with recording from ventral mesencephalic neurons characterized by antidromic stimulation from the dorsal striatum. We observed terminal fields of anterogradely labeled fibers that overlap populations of retrogradely labeled nigrostriatal cell bodies in the substantia nigra pars compacta and lateral ventral tegmental area (VTA), with numerous close appositions between boutons of anterogradely labeled fibers and nigrostriatal, TH‐immunopositive neurons. Neurophysiological stimulation in the medial ventral striatum caused inhibition of dopaminergic nigrostriatal neurons projecting to the ventrolateral striatal territory. Responding nigrostriatal neurons were located in the medial substantia nigra and adjacent VTA. Our results strongly suggest a functional link between ventromedial, emotional‐motivational striatum, and the sensorimotor dorsal striatum via dopaminergic nigrostriatal neurons.
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spelling pubmed-60994262018-08-24 Mesencephalic dopamine neurons interfacing the shell of nucleus accumbens and the dorsolateral striatum in the rat Wouterlood, Floris G. Engel, Angela Daal, Mariah Houwen, Gertjan Meinderts, Aileen Jordà Siquier, Tomàs Beliën, Jeroen A. M. van Dongen, Yvette C. Scheel‐Krüger, Jørgen Thierry, Anne‐Marie Groenewegen, Henk J. Deniau, Jean‐Michel J Neurosci Res Research Articles Parallel corticostriatonigral circuits have been proposed that separately process motor, cognitive, and emotional‐motivational information. Functional integration requires that interactions exist between neurons participating in these circuits. This makes it imperative to study the complex anatomical substrate underlying corticostriatonigral circuits. It has previously been proposed that dopaminergic neurons in the ventral mesencephalon may play a role in this circuit interaction. Therefore, we studied in rats convergence of basal ganglia circuits by depositing an anterograde neuroanatomical tracer into the ventral striatum together with a retrograde fluorescent tracer ipsilaterally in the dorsolateral striatum. In the mesencephalon, using confocal microscopy, we looked for possible appositions of anterogradely labeled fibers and retrogradely labeled neurons, “enhancing” the latter via intracellular injection of Lucifer Yellow. Tyrosine hydroxylase (TH) immunofluorescence served to identify dopaminergic neurons. In neurophysiological experiments, we combined orthodromic stimulation in the medial ventral striatum with recording from ventral mesencephalic neurons characterized by antidromic stimulation from the dorsal striatum. We observed terminal fields of anterogradely labeled fibers that overlap populations of retrogradely labeled nigrostriatal cell bodies in the substantia nigra pars compacta and lateral ventral tegmental area (VTA), with numerous close appositions between boutons of anterogradely labeled fibers and nigrostriatal, TH‐immunopositive neurons. Neurophysiological stimulation in the medial ventral striatum caused inhibition of dopaminergic nigrostriatal neurons projecting to the ventrolateral striatal territory. Responding nigrostriatal neurons were located in the medial substantia nigra and adjacent VTA. Our results strongly suggest a functional link between ventromedial, emotional‐motivational striatum, and the sensorimotor dorsal striatum via dopaminergic nigrostriatal neurons. John Wiley and Sons Inc. 2018-04-25 2018-09 /pmc/articles/PMC6099426/ /pubmed/29696690 http://dx.doi.org/10.1002/jnr.24242 Text en © 2018 The Authors Journal of Neuroscience Research Published by Wiley Periodicals, Inc. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research Articles
Wouterlood, Floris G.
Engel, Angela
Daal, Mariah
Houwen, Gertjan
Meinderts, Aileen
Jordà Siquier, Tomàs
Beliën, Jeroen A. M.
van Dongen, Yvette C.
Scheel‐Krüger, Jørgen
Thierry, Anne‐Marie
Groenewegen, Henk J.
Deniau, Jean‐Michel
Mesencephalic dopamine neurons interfacing the shell of nucleus accumbens and the dorsolateral striatum in the rat
title Mesencephalic dopamine neurons interfacing the shell of nucleus accumbens and the dorsolateral striatum in the rat
title_full Mesencephalic dopamine neurons interfacing the shell of nucleus accumbens and the dorsolateral striatum in the rat
title_fullStr Mesencephalic dopamine neurons interfacing the shell of nucleus accumbens and the dorsolateral striatum in the rat
title_full_unstemmed Mesencephalic dopamine neurons interfacing the shell of nucleus accumbens and the dorsolateral striatum in the rat
title_short Mesencephalic dopamine neurons interfacing the shell of nucleus accumbens and the dorsolateral striatum in the rat
title_sort mesencephalic dopamine neurons interfacing the shell of nucleus accumbens and the dorsolateral striatum in the rat
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6099426/
https://www.ncbi.nlm.nih.gov/pubmed/29696690
http://dx.doi.org/10.1002/jnr.24242
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