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Flow-Cytometry Platform for Intracellular Detection of FVIII in Blood Cells: A New Tool to Assess Gene Therapy Efficiency for Hemophilia A

Detection of factor VIII (FVIII) in cells by flow cytometry is controversial, and no monoclonal fluorescent antibody is commercially available. In this study, we optimized such an assay and successfully used it as a platform to study the functional properties of phosphoglycerate kinase (PGK)-FVIII l...

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Autores principales: Elnaggar, Muhammad, Al-Mohannadi, Anjud, Kizhakayil, Dhanya, Raynaud, Christophe Michel, Al-Mannai, Sharefa, Gentilcore, Giusy, Pavlovski, Igor, Sathappan, Abbirami, Van Panhuys, Nicholas, Borsotti, Chiara, Follenzi, Antonia, Grivel, Jean-Charles, Deola, Sara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6920166/
https://www.ncbi.nlm.nih.gov/pubmed/31886317
http://dx.doi.org/10.1016/j.omtm.2019.11.003
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author Elnaggar, Muhammad
Al-Mohannadi, Anjud
Kizhakayil, Dhanya
Raynaud, Christophe Michel
Al-Mannai, Sharefa
Gentilcore, Giusy
Pavlovski, Igor
Sathappan, Abbirami
Van Panhuys, Nicholas
Borsotti, Chiara
Follenzi, Antonia
Grivel, Jean-Charles
Deola, Sara
author_facet Elnaggar, Muhammad
Al-Mohannadi, Anjud
Kizhakayil, Dhanya
Raynaud, Christophe Michel
Al-Mannai, Sharefa
Gentilcore, Giusy
Pavlovski, Igor
Sathappan, Abbirami
Van Panhuys, Nicholas
Borsotti, Chiara
Follenzi, Antonia
Grivel, Jean-Charles
Deola, Sara
author_sort Elnaggar, Muhammad
collection PubMed
description Detection of factor VIII (FVIII) in cells by flow cytometry is controversial, and no monoclonal fluorescent antibody is commercially available. In this study, we optimized such an assay and successfully used it as a platform to study the functional properties of phosphoglycerate kinase (PGK)-FVIII lentiviral vector-transduced cells by directly visualizing FVIII in cells after different gene transfer conditions. We could measure cellular stress parameters after transduction by correlating gene expression and protein accumulation data. Flow cytometry performed on transduced cell lines showed that increasing MOI rates resulted in increased protein levels, plateauing after an MOI of 30. We speculated that, at higher MOI, FVIII production could be impaired by a limiting factor required for proper folding. To test this hypothesis, we interfered with the unfolded protein response by blocking proteasomal degradation and measured the accumulation of intracellular misfolded protein. Interestingly, at higher MOIs the cells displayed signs of toxicity with reactive oxygen species accumulation. This suggests the need for identifying a safe window of transduction dose to avoid consequent cell toxicity. Herein, we show that our flow cytometry platform for intracytoplasmic FVIII protein detection is a reliable method for optimizing gene therapy protocols in hemophilia A by shedding light on the functional status of cells after gene transfer.
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spelling pubmed-69201662019-12-27 Flow-Cytometry Platform for Intracellular Detection of FVIII in Blood Cells: A New Tool to Assess Gene Therapy Efficiency for Hemophilia A Elnaggar, Muhammad Al-Mohannadi, Anjud Kizhakayil, Dhanya Raynaud, Christophe Michel Al-Mannai, Sharefa Gentilcore, Giusy Pavlovski, Igor Sathappan, Abbirami Van Panhuys, Nicholas Borsotti, Chiara Follenzi, Antonia Grivel, Jean-Charles Deola, Sara Mol Ther Methods Clin Dev Article Detection of factor VIII (FVIII) in cells by flow cytometry is controversial, and no monoclonal fluorescent antibody is commercially available. In this study, we optimized such an assay and successfully used it as a platform to study the functional properties of phosphoglycerate kinase (PGK)-FVIII lentiviral vector-transduced cells by directly visualizing FVIII in cells after different gene transfer conditions. We could measure cellular stress parameters after transduction by correlating gene expression and protein accumulation data. Flow cytometry performed on transduced cell lines showed that increasing MOI rates resulted in increased protein levels, plateauing after an MOI of 30. We speculated that, at higher MOI, FVIII production could be impaired by a limiting factor required for proper folding. To test this hypothesis, we interfered with the unfolded protein response by blocking proteasomal degradation and measured the accumulation of intracellular misfolded protein. Interestingly, at higher MOIs the cells displayed signs of toxicity with reactive oxygen species accumulation. This suggests the need for identifying a safe window of transduction dose to avoid consequent cell toxicity. Herein, we show that our flow cytometry platform for intracytoplasmic FVIII protein detection is a reliable method for optimizing gene therapy protocols in hemophilia A by shedding light on the functional status of cells after gene transfer. American Society of Gene & Cell Therapy 2019-11-15 /pmc/articles/PMC6920166/ /pubmed/31886317 http://dx.doi.org/10.1016/j.omtm.2019.11.003 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 Article
Elnaggar, Muhammad
Al-Mohannadi, Anjud
Kizhakayil, Dhanya
Raynaud, Christophe Michel
Al-Mannai, Sharefa
Gentilcore, Giusy
Pavlovski, Igor
Sathappan, Abbirami
Van Panhuys, Nicholas
Borsotti, Chiara
Follenzi, Antonia
Grivel, Jean-Charles
Deola, Sara
Flow-Cytometry Platform for Intracellular Detection of FVIII in Blood Cells: A New Tool to Assess Gene Therapy Efficiency for Hemophilia A
title Flow-Cytometry Platform for Intracellular Detection of FVIII in Blood Cells: A New Tool to Assess Gene Therapy Efficiency for Hemophilia A
title_full Flow-Cytometry Platform for Intracellular Detection of FVIII in Blood Cells: A New Tool to Assess Gene Therapy Efficiency for Hemophilia A
title_fullStr Flow-Cytometry Platform for Intracellular Detection of FVIII in Blood Cells: A New Tool to Assess Gene Therapy Efficiency for Hemophilia A
title_full_unstemmed Flow-Cytometry Platform for Intracellular Detection of FVIII in Blood Cells: A New Tool to Assess Gene Therapy Efficiency for Hemophilia A
title_short Flow-Cytometry Platform for Intracellular Detection of FVIII in Blood Cells: A New Tool to Assess Gene Therapy Efficiency for Hemophilia A
title_sort flow-cytometry platform for intracellular detection of fviii in blood cells: a new tool to assess gene therapy efficiency for hemophilia a
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6920166/
https://www.ncbi.nlm.nih.gov/pubmed/31886317
http://dx.doi.org/10.1016/j.omtm.2019.11.003
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