Cargando…

Human Pluripotent Stem-Cell-Derived Cortical Neurons Integrate Functionally into the Lesioned Adult Murine Visual Cortex in an Area-Specific Way

The transplantation of pluripotent stem-cell-derived neurons constitutes a promising avenue for the treatment of several brain diseases. However, their potential for the repair of the cerebral cortex remains unclear, given its complexity and neuronal diversity. Here, we show that human visual cortic...

Descripción completa

Detalles Bibliográficos
Autores principales: Espuny-Camacho, Ira, Michelsen, Kimmo A., Linaro, Daniele, Bilheu, Angéline, Acosta-Verdugo, Sandra, Herpoel, Adèle, Giugliano, Michele, Gaillard, Afsaneh, Vanderhaeghen, Pierre
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5990494/
https://www.ncbi.nlm.nih.gov/pubmed/29847802
http://dx.doi.org/10.1016/j.celrep.2018.04.094
_version_ 1783329584718020608
author Espuny-Camacho, Ira
Michelsen, Kimmo A.
Linaro, Daniele
Bilheu, Angéline
Acosta-Verdugo, Sandra
Herpoel, Adèle
Giugliano, Michele
Gaillard, Afsaneh
Vanderhaeghen, Pierre
author_facet Espuny-Camacho, Ira
Michelsen, Kimmo A.
Linaro, Daniele
Bilheu, Angéline
Acosta-Verdugo, Sandra
Herpoel, Adèle
Giugliano, Michele
Gaillard, Afsaneh
Vanderhaeghen, Pierre
author_sort Espuny-Camacho, Ira
collection PubMed
description The transplantation of pluripotent stem-cell-derived neurons constitutes a promising avenue for the treatment of several brain diseases. However, their potential for the repair of the cerebral cortex remains unclear, given its complexity and neuronal diversity. Here, we show that human visual cortical cells differentiated from embryonic stem cells can be transplanted and can integrate successfully into the lesioned mouse adult visual cortex. The transplanted human neurons expressed the appropriate repertoire of markers of six cortical layers, projected axons to specific visual cortical targets, and were synaptically active within the adult brain. Moreover, transplant maturation and integration were much less efficient following transplantation into the lesioned motor cortex, as previously observed for transplanted mouse cortical neurons. These data constitute an important milestone for the potential use of human PSC-derived cortical cells for the reassembly of cortical circuits and emphasize the importance of cortical areal identity for successful transplantation.
format Online
Article
Text
id pubmed-5990494
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Cell Press
record_format MEDLINE/PubMed
spelling pubmed-59904942018-06-08 Human Pluripotent Stem-Cell-Derived Cortical Neurons Integrate Functionally into the Lesioned Adult Murine Visual Cortex in an Area-Specific Way Espuny-Camacho, Ira Michelsen, Kimmo A. Linaro, Daniele Bilheu, Angéline Acosta-Verdugo, Sandra Herpoel, Adèle Giugliano, Michele Gaillard, Afsaneh Vanderhaeghen, Pierre Cell Rep Article The transplantation of pluripotent stem-cell-derived neurons constitutes a promising avenue for the treatment of several brain diseases. However, their potential for the repair of the cerebral cortex remains unclear, given its complexity and neuronal diversity. Here, we show that human visual cortical cells differentiated from embryonic stem cells can be transplanted and can integrate successfully into the lesioned mouse adult visual cortex. The transplanted human neurons expressed the appropriate repertoire of markers of six cortical layers, projected axons to specific visual cortical targets, and were synaptically active within the adult brain. Moreover, transplant maturation and integration were much less efficient following transplantation into the lesioned motor cortex, as previously observed for transplanted mouse cortical neurons. These data constitute an important milestone for the potential use of human PSC-derived cortical cells for the reassembly of cortical circuits and emphasize the importance of cortical areal identity for successful transplantation. Cell Press 2018-05-29 /pmc/articles/PMC5990494/ /pubmed/29847802 http://dx.doi.org/10.1016/j.celrep.2018.04.094 Text en © 2018 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Espuny-Camacho, Ira
Michelsen, Kimmo A.
Linaro, Daniele
Bilheu, Angéline
Acosta-Verdugo, Sandra
Herpoel, Adèle
Giugliano, Michele
Gaillard, Afsaneh
Vanderhaeghen, Pierre
Human Pluripotent Stem-Cell-Derived Cortical Neurons Integrate Functionally into the Lesioned Adult Murine Visual Cortex in an Area-Specific Way
title Human Pluripotent Stem-Cell-Derived Cortical Neurons Integrate Functionally into the Lesioned Adult Murine Visual Cortex in an Area-Specific Way
title_full Human Pluripotent Stem-Cell-Derived Cortical Neurons Integrate Functionally into the Lesioned Adult Murine Visual Cortex in an Area-Specific Way
title_fullStr Human Pluripotent Stem-Cell-Derived Cortical Neurons Integrate Functionally into the Lesioned Adult Murine Visual Cortex in an Area-Specific Way
title_full_unstemmed Human Pluripotent Stem-Cell-Derived Cortical Neurons Integrate Functionally into the Lesioned Adult Murine Visual Cortex in an Area-Specific Way
title_short Human Pluripotent Stem-Cell-Derived Cortical Neurons Integrate Functionally into the Lesioned Adult Murine Visual Cortex in an Area-Specific Way
title_sort human pluripotent stem-cell-derived cortical neurons integrate functionally into the lesioned adult murine visual cortex in an area-specific way
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5990494/
https://www.ncbi.nlm.nih.gov/pubmed/29847802
http://dx.doi.org/10.1016/j.celrep.2018.04.094
work_keys_str_mv AT espunycamachoira humanpluripotentstemcellderivedcorticalneuronsintegratefunctionallyintothelesionedadultmurinevisualcortexinanareaspecificway
AT michelsenkimmoa humanpluripotentstemcellderivedcorticalneuronsintegratefunctionallyintothelesionedadultmurinevisualcortexinanareaspecificway
AT linarodaniele humanpluripotentstemcellderivedcorticalneuronsintegratefunctionallyintothelesionedadultmurinevisualcortexinanareaspecificway
AT bilheuangeline humanpluripotentstemcellderivedcorticalneuronsintegratefunctionallyintothelesionedadultmurinevisualcortexinanareaspecificway
AT acostaverdugosandra humanpluripotentstemcellderivedcorticalneuronsintegratefunctionallyintothelesionedadultmurinevisualcortexinanareaspecificway
AT herpoeladele humanpluripotentstemcellderivedcorticalneuronsintegratefunctionallyintothelesionedadultmurinevisualcortexinanareaspecificway
AT giuglianomichele humanpluripotentstemcellderivedcorticalneuronsintegratefunctionallyintothelesionedadultmurinevisualcortexinanareaspecificway
AT gaillardafsaneh humanpluripotentstemcellderivedcorticalneuronsintegratefunctionallyintothelesionedadultmurinevisualcortexinanareaspecificway
AT vanderhaeghenpierre humanpluripotentstemcellderivedcorticalneuronsintegratefunctionallyintothelesionedadultmurinevisualcortexinanareaspecificway