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Efficient CRISPR-Cas9-Mediated Gene Ablation in Human Keratinocytes to Recapitulate Genodermatoses: Modeling of Netherton Syndrome

Current efforts to find specific genodermatoses treatments and define precise pathogenesis mechanisms require appropriate surrogate models with human cells. Although transgenic and gene knockout mouse models for several of these disorders exist, they often fail to faithfully replicate the clinical a...

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Autores principales: Gálvez, Victoria, Chacón-Solano, Esteban, Bonafont, Jose, Mencía, Ángeles, Di, Wei-Li, Murillas, Rodolfo, Llames, Sara, Vicente, Asunción, Del Rio, Marcela, Carretero, Marta, Larcher, Fernando
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/PMC7329935/
https://www.ncbi.nlm.nih.gov/pubmed/32637457
http://dx.doi.org/10.1016/j.omtm.2020.05.031
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author Gálvez, Victoria
Chacón-Solano, Esteban
Bonafont, Jose
Mencía, Ángeles
Di, Wei-Li
Murillas, Rodolfo
Llames, Sara
Vicente, Asunción
Del Rio, Marcela
Carretero, Marta
Larcher, Fernando
author_facet Gálvez, Victoria
Chacón-Solano, Esteban
Bonafont, Jose
Mencía, Ángeles
Di, Wei-Li
Murillas, Rodolfo
Llames, Sara
Vicente, Asunción
Del Rio, Marcela
Carretero, Marta
Larcher, Fernando
author_sort Gálvez, Victoria
collection PubMed
description Current efforts to find specific genodermatoses treatments and define precise pathogenesis mechanisms require appropriate surrogate models with human cells. Although transgenic and gene knockout mouse models for several of these disorders exist, they often fail to faithfully replicate the clinical and histopathological features of the human skin condition. We have established a highly efficient method for precise deletion of critical gene sequences in primary human keratinocytes, based on CRISPR-Cas9-mediated gene editing. Using this methodology, in the present study we generated a model of Netherton syndrome by disruption of SPINK5. Gene-edited cells showed absence of LEKTI expression and were able to recapitulate a hyperkeratotic phenotype with most of the molecular hallmarks of Netherton syndrome, after grafting to immunodeficient mice and in organotypic cultures. To validate the model as a platform for therapeutic intervention, we tested an ex vivo gene therapy approach using a lentiviral vector expressing SPINK5. Re-expression of SPINK5 in an immortalized clone of SPINK5-knockout keratinocytes was capable of reverting from Netherton syndrome to a normal skin phenotype in vivo and in vitro. Our results demonstrate the feasibility of modeling genodermatoses, such as Netherton syndrome, by efficiently disrupting the causative gene to better understand its pathogenesis and to develop novel therapeutic approaches.
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spelling pubmed-73299352020-07-06 Efficient CRISPR-Cas9-Mediated Gene Ablation in Human Keratinocytes to Recapitulate Genodermatoses: Modeling of Netherton Syndrome Gálvez, Victoria Chacón-Solano, Esteban Bonafont, Jose Mencía, Ángeles Di, Wei-Li Murillas, Rodolfo Llames, Sara Vicente, Asunción Del Rio, Marcela Carretero, Marta Larcher, Fernando Mol Ther Methods Clin Dev Article Current efforts to find specific genodermatoses treatments and define precise pathogenesis mechanisms require appropriate surrogate models with human cells. Although transgenic and gene knockout mouse models for several of these disorders exist, they often fail to faithfully replicate the clinical and histopathological features of the human skin condition. We have established a highly efficient method for precise deletion of critical gene sequences in primary human keratinocytes, based on CRISPR-Cas9-mediated gene editing. Using this methodology, in the present study we generated a model of Netherton syndrome by disruption of SPINK5. Gene-edited cells showed absence of LEKTI expression and were able to recapitulate a hyperkeratotic phenotype with most of the molecular hallmarks of Netherton syndrome, after grafting to immunodeficient mice and in organotypic cultures. To validate the model as a platform for therapeutic intervention, we tested an ex vivo gene therapy approach using a lentiviral vector expressing SPINK5. Re-expression of SPINK5 in an immortalized clone of SPINK5-knockout keratinocytes was capable of reverting from Netherton syndrome to a normal skin phenotype in vivo and in vitro. Our results demonstrate the feasibility of modeling genodermatoses, such as Netherton syndrome, by efficiently disrupting the causative gene to better understand its pathogenesis and to develop novel therapeutic approaches. American Society of Gene & Cell Therapy 2020-06-11 /pmc/articles/PMC7329935/ /pubmed/32637457 http://dx.doi.org/10.1016/j.omtm.2020.05.031 Text en © 2020 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
Gálvez, Victoria
Chacón-Solano, Esteban
Bonafont, Jose
Mencía, Ángeles
Di, Wei-Li
Murillas, Rodolfo
Llames, Sara
Vicente, Asunción
Del Rio, Marcela
Carretero, Marta
Larcher, Fernando
Efficient CRISPR-Cas9-Mediated Gene Ablation in Human Keratinocytes to Recapitulate Genodermatoses: Modeling of Netherton Syndrome
title Efficient CRISPR-Cas9-Mediated Gene Ablation in Human Keratinocytes to Recapitulate Genodermatoses: Modeling of Netherton Syndrome
title_full Efficient CRISPR-Cas9-Mediated Gene Ablation in Human Keratinocytes to Recapitulate Genodermatoses: Modeling of Netherton Syndrome
title_fullStr Efficient CRISPR-Cas9-Mediated Gene Ablation in Human Keratinocytes to Recapitulate Genodermatoses: Modeling of Netherton Syndrome
title_full_unstemmed Efficient CRISPR-Cas9-Mediated Gene Ablation in Human Keratinocytes to Recapitulate Genodermatoses: Modeling of Netherton Syndrome
title_short Efficient CRISPR-Cas9-Mediated Gene Ablation in Human Keratinocytes to Recapitulate Genodermatoses: Modeling of Netherton Syndrome
title_sort efficient crispr-cas9-mediated gene ablation in human keratinocytes to recapitulate genodermatoses: modeling of netherton syndrome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7329935/
https://www.ncbi.nlm.nih.gov/pubmed/32637457
http://dx.doi.org/10.1016/j.omtm.2020.05.031
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