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mRNA Transfection of Mouse and Human Neural Stem Cell Cultures

The use of synthetic mRNA as an alternative gene delivery vector to traditional DNA-based constructs provides an effective method for inducing transient gene expression in cell cultures without genetic modification. Delivery of mRNA has been proposed as a safer alternative to viral vectors in the in...

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Autores principales: McLenachan, Samuel, Zhang, Dan, Palomo, Ana Belén Alvarez, Edel, Michael J., Chen, Fred K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3873397/
https://www.ncbi.nlm.nih.gov/pubmed/24386231
http://dx.doi.org/10.1371/journal.pone.0083596
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author McLenachan, Samuel
Zhang, Dan
Palomo, Ana Belén Alvarez
Edel, Michael J.
Chen, Fred K.
author_facet McLenachan, Samuel
Zhang, Dan
Palomo, Ana Belén Alvarez
Edel, Michael J.
Chen, Fred K.
author_sort McLenachan, Samuel
collection PubMed
description The use of synthetic mRNA as an alternative gene delivery vector to traditional DNA-based constructs provides an effective method for inducing transient gene expression in cell cultures without genetic modification. Delivery of mRNA has been proposed as a safer alternative to viral vectors in the induction of pluripotent cells for regenerative therapies. Although mRNA transfection of fibroblasts, dendritic and embryonic stem cells has been described, mRNA delivery to neurosphere cultures has not been previously reported. Here we sought to establish an efficient method for delivering mRNA to primary neurosphere cultures. Neurospheres derived from the subventricular zone of adult mice or from human embryonic stem cells were transfected with EGFP mRNA by lipofection and electroporation. Transfection efficiency and expression levels were monitored by flow cytometry. Cell survival following transfection was examined using live cell counting and the MTT assay. Both lipofection and electroporation provided high efficiency transfection of neurospheres. In comparison with lipofection, electroporation resulted in increased transfection efficiencies, but lower expression per cell and shorter durations of expression. Additional rounds of lipofection renewed EGFP expression in neurospheres, suggesting this method may be suitable for reprogramming applications. In summary, we have developed a protocol for achieving high efficiency transfection rates in mouse and human neurosphere cell culture that can be applied for future studies of gene function studies in neural stem cells, such as defining efficient differentiation protocols for glial and neuronal linages.
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spelling pubmed-38733972014-01-02 mRNA Transfection of Mouse and Human Neural Stem Cell Cultures McLenachan, Samuel Zhang, Dan Palomo, Ana Belén Alvarez Edel, Michael J. Chen, Fred K. PLoS One Research Article The use of synthetic mRNA as an alternative gene delivery vector to traditional DNA-based constructs provides an effective method for inducing transient gene expression in cell cultures without genetic modification. Delivery of mRNA has been proposed as a safer alternative to viral vectors in the induction of pluripotent cells for regenerative therapies. Although mRNA transfection of fibroblasts, dendritic and embryonic stem cells has been described, mRNA delivery to neurosphere cultures has not been previously reported. Here we sought to establish an efficient method for delivering mRNA to primary neurosphere cultures. Neurospheres derived from the subventricular zone of adult mice or from human embryonic stem cells were transfected with EGFP mRNA by lipofection and electroporation. Transfection efficiency and expression levels were monitored by flow cytometry. Cell survival following transfection was examined using live cell counting and the MTT assay. Both lipofection and electroporation provided high efficiency transfection of neurospheres. In comparison with lipofection, electroporation resulted in increased transfection efficiencies, but lower expression per cell and shorter durations of expression. Additional rounds of lipofection renewed EGFP expression in neurospheres, suggesting this method may be suitable for reprogramming applications. In summary, we have developed a protocol for achieving high efficiency transfection rates in mouse and human neurosphere cell culture that can be applied for future studies of gene function studies in neural stem cells, such as defining efficient differentiation protocols for glial and neuronal linages. Public Library of Science 2013-12-26 /pmc/articles/PMC3873397/ /pubmed/24386231 http://dx.doi.org/10.1371/journal.pone.0083596 Text en © 2013 McLenachan et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
McLenachan, Samuel
Zhang, Dan
Palomo, Ana Belén Alvarez
Edel, Michael J.
Chen, Fred K.
mRNA Transfection of Mouse and Human Neural Stem Cell Cultures
title mRNA Transfection of Mouse and Human Neural Stem Cell Cultures
title_full mRNA Transfection of Mouse and Human Neural Stem Cell Cultures
title_fullStr mRNA Transfection of Mouse and Human Neural Stem Cell Cultures
title_full_unstemmed mRNA Transfection of Mouse and Human Neural Stem Cell Cultures
title_short mRNA Transfection of Mouse and Human Neural Stem Cell Cultures
title_sort mrna transfection of mouse and human neural stem cell cultures
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3873397/
https://www.ncbi.nlm.nih.gov/pubmed/24386231
http://dx.doi.org/10.1371/journal.pone.0083596
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