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Differentiation of the 50B11 dorsal ganglion cells into NGF and GDNF responsive nociceptor subtypes

The embryonic rat dorsal root ganglion (DRG) neuron-derived 50B11 cell line is a promising sensory neuron model expressing markers characteristic of NGF and GDNF-dependent C-fibre nociceptors. Whether these cells have the capacity to develop into distinct nociceptive subtypes based on NGF- or GDNF-d...

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Autores principales: Dusan, Matusica, Jastrow, Canlas, Alyce, Martin M, Yingkai, Wei, Shashikanth, Marri, Andelain, Erickson, Christine, Barry M, Stuart, Brierley M, Oliver, Best G, Michael, Michael Z, Nicolas, Voelcker H, Damien, Keating J, Rainer, Haberberger V
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7745567/
https://www.ncbi.nlm.nih.gov/pubmed/33307981
http://dx.doi.org/10.1177/1744806920970368
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author Dusan, Matusica
Jastrow, Canlas
Alyce, Martin M
Yingkai, Wei
Shashikanth, Marri
Andelain, Erickson
Christine, Barry M
Stuart, Brierley M
Oliver, Best G
Michael, Michael Z
Nicolas, Voelcker H
Damien, Keating J
Rainer, Haberberger V
author_facet Dusan, Matusica
Jastrow, Canlas
Alyce, Martin M
Yingkai, Wei
Shashikanth, Marri
Andelain, Erickson
Christine, Barry M
Stuart, Brierley M
Oliver, Best G
Michael, Michael Z
Nicolas, Voelcker H
Damien, Keating J
Rainer, Haberberger V
author_sort Dusan, Matusica
collection PubMed
description The embryonic rat dorsal root ganglion (DRG) neuron-derived 50B11 cell line is a promising sensory neuron model expressing markers characteristic of NGF and GDNF-dependent C-fibre nociceptors. Whether these cells have the capacity to develop into distinct nociceptive subtypes based on NGF- or GDNF-dependence has not been investigated. Here we show that by augmenting forskolin (FSK) and growth factor supplementation with NGF or GDNF, 50B11 cultures can be driven to acquire differential functional responses to common nociceptive agonists capsaicin and ATP respectively. In addition, to previous studies, we also demonstrate that a differentiated neuronal phenotype can be maintained for up to 7 days. Western blot analysis of nociceptive marker proteins further demonstrates that the 50B11 cells partially recapitulate the functional phenotypes of classical NGF-dependent (peptidergic) and GDNF-dependent (non-peptidergic) neuronal subtypes described in DRGs. Further, 50B11 cells differentiated with NGF/FSK, but not GDNF/FSK, show sensitization to acute prostaglandin E2 treatment. Finally, RNA-Seq analysis confirms that differentiation with NGF/FSK or GDNF/FSK produces two 50B11 cell subtypes with distinct transcriptome expression profiles. Gene ontology comparison of the two subtypes of differentiated 50B11 cells to rodent DRG neurons studies shows significant overlap in matching or partially matching categories. This transcriptomic analysis will aid future suitability assessment of the 50B11 cells as a high-throughput nociceptor model for a broad range of experimental applications. In conclusion, this study shows that the 50B11 cell line is capable of partially recapitulating features of two distinct types of embryonic NGF and GDNF-dependent nociceptor-like cells.
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spelling pubmed-77455672021-01-04 Differentiation of the 50B11 dorsal ganglion cells into NGF and GDNF responsive nociceptor subtypes Dusan, Matusica Jastrow, Canlas Alyce, Martin M Yingkai, Wei Shashikanth, Marri Andelain, Erickson Christine, Barry M Stuart, Brierley M Oliver, Best G Michael, Michael Z Nicolas, Voelcker H Damien, Keating J Rainer, Haberberger V Mol Pain Research Article The embryonic rat dorsal root ganglion (DRG) neuron-derived 50B11 cell line is a promising sensory neuron model expressing markers characteristic of NGF and GDNF-dependent C-fibre nociceptors. Whether these cells have the capacity to develop into distinct nociceptive subtypes based on NGF- or GDNF-dependence has not been investigated. Here we show that by augmenting forskolin (FSK) and growth factor supplementation with NGF or GDNF, 50B11 cultures can be driven to acquire differential functional responses to common nociceptive agonists capsaicin and ATP respectively. In addition, to previous studies, we also demonstrate that a differentiated neuronal phenotype can be maintained for up to 7 days. Western blot analysis of nociceptive marker proteins further demonstrates that the 50B11 cells partially recapitulate the functional phenotypes of classical NGF-dependent (peptidergic) and GDNF-dependent (non-peptidergic) neuronal subtypes described in DRGs. Further, 50B11 cells differentiated with NGF/FSK, but not GDNF/FSK, show sensitization to acute prostaglandin E2 treatment. Finally, RNA-Seq analysis confirms that differentiation with NGF/FSK or GDNF/FSK produces two 50B11 cell subtypes with distinct transcriptome expression profiles. Gene ontology comparison of the two subtypes of differentiated 50B11 cells to rodent DRG neurons studies shows significant overlap in matching or partially matching categories. This transcriptomic analysis will aid future suitability assessment of the 50B11 cells as a high-throughput nociceptor model for a broad range of experimental applications. In conclusion, this study shows that the 50B11 cell line is capable of partially recapitulating features of two distinct types of embryonic NGF and GDNF-dependent nociceptor-like cells. SAGE Publications 2020-12-15 /pmc/articles/PMC7745567/ /pubmed/33307981 http://dx.doi.org/10.1177/1744806920970368 Text en © The Author(s) 2020 https://creativecommons.org/licenses/by-nc/4.0/ Creative Commons Non Commercial CC BY-NC: This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (https://creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access pages (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Research Article
Dusan, Matusica
Jastrow, Canlas
Alyce, Martin M
Yingkai, Wei
Shashikanth, Marri
Andelain, Erickson
Christine, Barry M
Stuart, Brierley M
Oliver, Best G
Michael, Michael Z
Nicolas, Voelcker H
Damien, Keating J
Rainer, Haberberger V
Differentiation of the 50B11 dorsal ganglion cells into NGF and GDNF responsive nociceptor subtypes
title Differentiation of the 50B11 dorsal ganglion cells into NGF and GDNF responsive nociceptor subtypes
title_full Differentiation of the 50B11 dorsal ganglion cells into NGF and GDNF responsive nociceptor subtypes
title_fullStr Differentiation of the 50B11 dorsal ganglion cells into NGF and GDNF responsive nociceptor subtypes
title_full_unstemmed Differentiation of the 50B11 dorsal ganglion cells into NGF and GDNF responsive nociceptor subtypes
title_short Differentiation of the 50B11 dorsal ganglion cells into NGF and GDNF responsive nociceptor subtypes
title_sort differentiation of the 50b11 dorsal ganglion cells into ngf and gdnf responsive nociceptor subtypes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7745567/
https://www.ncbi.nlm.nih.gov/pubmed/33307981
http://dx.doi.org/10.1177/1744806920970368
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