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A NeuroD1 AAV-Based Gene Therapy for Functional Brain Repair after Ischemic Injury through In Vivo Astrocyte-to-Neuron Conversion

Adult mammalian brains have largely lost neuroregeneration capability except for a few niches. Previous studies have converted glial cells into neurons, but the total number of neurons generated is limited and the therapeutic potential is unclear. Here, we demonstrate that NeuroD1-mediated in situ a...

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Autores principales: Chen, Yu-Chen, Ma, Ning-Xin, Pei, Zi-Fei, Wu, Zheng, Do-Monte, Fabricio H., Keefe, Susan, Yellin, Emma, Chen, Miranda S., Yin, Jiu-Chao, Lee, Grace, Minier-Toribio, Angélica, Hu, Yi, Bai, Yu-Ting, Lee, Kathryn, Quirk, Gregory J., Chen, Gong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6952185/
https://www.ncbi.nlm.nih.gov/pubmed/31551137
http://dx.doi.org/10.1016/j.ymthe.2019.09.003
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author Chen, Yu-Chen
Ma, Ning-Xin
Pei, Zi-Fei
Wu, Zheng
Do-Monte, Fabricio H.
Keefe, Susan
Yellin, Emma
Chen, Miranda S.
Yin, Jiu-Chao
Lee, Grace
Minier-Toribio, Angélica
Hu, Yi
Bai, Yu-Ting
Lee, Kathryn
Quirk, Gregory J.
Chen, Gong
author_facet Chen, Yu-Chen
Ma, Ning-Xin
Pei, Zi-Fei
Wu, Zheng
Do-Monte, Fabricio H.
Keefe, Susan
Yellin, Emma
Chen, Miranda S.
Yin, Jiu-Chao
Lee, Grace
Minier-Toribio, Angélica
Hu, Yi
Bai, Yu-Ting
Lee, Kathryn
Quirk, Gregory J.
Chen, Gong
author_sort Chen, Yu-Chen
collection PubMed
description Adult mammalian brains have largely lost neuroregeneration capability except for a few niches. Previous studies have converted glial cells into neurons, but the total number of neurons generated is limited and the therapeutic potential is unclear. Here, we demonstrate that NeuroD1-mediated in situ astrocyte-to-neuron conversion can regenerate a large number of functional new neurons after ischemic injury. Specifically, using NeuroD1 adeno-associated virus (AAV)-based gene therapy, we were able to regenerate one third of the total lost neurons caused by ischemic injury and simultaneously protect another one third of injured neurons, leading to a significant neuronal recovery. RNA sequencing and immunostaining confirmed neuronal recovery after cell conversion at both the mRNA level and protein level. Brain slice recordings found that the astrocyte-converted neurons showed robust action potentials and synaptic responses at 2 months after NeuroD1 expression. Anterograde and retrograde tracing revealed long-range axonal projections from astrocyte-converted neurons to their target regions in a time-dependent manner. Behavioral analyses showed a significant improvement of both motor and cognitive functions after cell conversion. Together, these results demonstrate that in vivo cell conversion technology through NeuroD1-based gene therapy can regenerate a large number of functional new neurons to restore lost neuronal functions after injury.
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spelling pubmed-69521852021-01-08 A NeuroD1 AAV-Based Gene Therapy for Functional Brain Repair after Ischemic Injury through In Vivo Astrocyte-to-Neuron Conversion Chen, Yu-Chen Ma, Ning-Xin Pei, Zi-Fei Wu, Zheng Do-Monte, Fabricio H. Keefe, Susan Yellin, Emma Chen, Miranda S. Yin, Jiu-Chao Lee, Grace Minier-Toribio, Angélica Hu, Yi Bai, Yu-Ting Lee, Kathryn Quirk, Gregory J. Chen, Gong Mol Ther Original Article Adult mammalian brains have largely lost neuroregeneration capability except for a few niches. Previous studies have converted glial cells into neurons, but the total number of neurons generated is limited and the therapeutic potential is unclear. Here, we demonstrate that NeuroD1-mediated in situ astrocyte-to-neuron conversion can regenerate a large number of functional new neurons after ischemic injury. Specifically, using NeuroD1 adeno-associated virus (AAV)-based gene therapy, we were able to regenerate one third of the total lost neurons caused by ischemic injury and simultaneously protect another one third of injured neurons, leading to a significant neuronal recovery. RNA sequencing and immunostaining confirmed neuronal recovery after cell conversion at both the mRNA level and protein level. Brain slice recordings found that the astrocyte-converted neurons showed robust action potentials and synaptic responses at 2 months after NeuroD1 expression. Anterograde and retrograde tracing revealed long-range axonal projections from astrocyte-converted neurons to their target regions in a time-dependent manner. Behavioral analyses showed a significant improvement of both motor and cognitive functions after cell conversion. Together, these results demonstrate that in vivo cell conversion technology through NeuroD1-based gene therapy can regenerate a large number of functional new neurons to restore lost neuronal functions after injury. American Society of Gene & Cell Therapy 2020-01-08 2019-09-06 /pmc/articles/PMC6952185/ /pubmed/31551137 http://dx.doi.org/10.1016/j.ymthe.2019.09.003 Text en © 2019 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 Original Article
Chen, Yu-Chen
Ma, Ning-Xin
Pei, Zi-Fei
Wu, Zheng
Do-Monte, Fabricio H.
Keefe, Susan
Yellin, Emma
Chen, Miranda S.
Yin, Jiu-Chao
Lee, Grace
Minier-Toribio, Angélica
Hu, Yi
Bai, Yu-Ting
Lee, Kathryn
Quirk, Gregory J.
Chen, Gong
A NeuroD1 AAV-Based Gene Therapy for Functional Brain Repair after Ischemic Injury through In Vivo Astrocyte-to-Neuron Conversion
title A NeuroD1 AAV-Based Gene Therapy for Functional Brain Repair after Ischemic Injury through In Vivo Astrocyte-to-Neuron Conversion
title_full A NeuroD1 AAV-Based Gene Therapy for Functional Brain Repair after Ischemic Injury through In Vivo Astrocyte-to-Neuron Conversion
title_fullStr A NeuroD1 AAV-Based Gene Therapy for Functional Brain Repair after Ischemic Injury through In Vivo Astrocyte-to-Neuron Conversion
title_full_unstemmed A NeuroD1 AAV-Based Gene Therapy for Functional Brain Repair after Ischemic Injury through In Vivo Astrocyte-to-Neuron Conversion
title_short A NeuroD1 AAV-Based Gene Therapy for Functional Brain Repair after Ischemic Injury through In Vivo Astrocyte-to-Neuron Conversion
title_sort neurod1 aav-based gene therapy for functional brain repair after ischemic injury through in vivo astrocyte-to-neuron conversion
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6952185/
https://www.ncbi.nlm.nih.gov/pubmed/31551137
http://dx.doi.org/10.1016/j.ymthe.2019.09.003
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