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A Novel Branched DNA-Based Flowcytometric Method for Single-Cell Characterization of Gene Therapy Products and Expression of Therapeutic Genes

Many preclinical and clinical studies of hematopoietic stem cell-based gene therapy (GT) are based on the use of lentiviruses as the vector of choice. Assessment of the vector titer and transduction efficiency of the cell product is critical for these studies. Efficacy and safety of the modified cel...

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Autores principales: Garcia-Perez, Laura, van Eggermond, Marja C.J.A., Maietta, Elisa, van der Hoorn, Marie-Louise P., Pike-Overzet, Karin, Staal, Frank J. T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7876092/
https://www.ncbi.nlm.nih.gov/pubmed/33584681
http://dx.doi.org/10.3389/fimmu.2020.607991
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author Garcia-Perez, Laura
van Eggermond, Marja C.J.A.
Maietta, Elisa
van der Hoorn, Marie-Louise P.
Pike-Overzet, Karin
Staal, Frank J. T.
author_facet Garcia-Perez, Laura
van Eggermond, Marja C.J.A.
Maietta, Elisa
van der Hoorn, Marie-Louise P.
Pike-Overzet, Karin
Staal, Frank J. T.
author_sort Garcia-Perez, Laura
collection PubMed
description Many preclinical and clinical studies of hematopoietic stem cell-based gene therapy (GT) are based on the use of lentiviruses as the vector of choice. Assessment of the vector titer and transduction efficiency of the cell product is critical for these studies. Efficacy and safety of the modified cell product are commonly determined by assessing the vector copy number (VCN) using qPCR. However, this optimized and well-established method in the GT field is based on bulk population averages, which can lead to misinterpretation of the actual VCN per transduced cell. Therefore, we introduce here a single cell-based method that allows to unmask cellular heterogeneity in the GT product, even when antibodies are not available. We use Invitrogen’s flow cytometry-based PrimeFlow™ RNA Assay with customized probes to determine transduction efficiency of transgenes of interest, promoter strength, and the cellular heterogeneity of murine and human stem cells. The assay has good specificity and sensitivity to detect the transgenes, as shown by the high correlations between PrimeFlow™-positive cells and the VCN. Differences in promoter strengths can readily be detected by differences in percentages and fluorescence intensity. Hence, we show a customizable method that allows to determine the number of transduced cells and the actual VCN per transduced cell in a GT product. The assay is suitable for all therapeutic genes for which antibodies are not available or too cumbersome for routine flow cytometry. The method also allows co-staining of surface markers to analyze differential transduction efficiencies in subpopulations of target cells.
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spelling pubmed-78760922021-02-12 A Novel Branched DNA-Based Flowcytometric Method for Single-Cell Characterization of Gene Therapy Products and Expression of Therapeutic Genes Garcia-Perez, Laura van Eggermond, Marja C.J.A. Maietta, Elisa van der Hoorn, Marie-Louise P. Pike-Overzet, Karin Staal, Frank J. T. Front Immunol Immunology Many preclinical and clinical studies of hematopoietic stem cell-based gene therapy (GT) are based on the use of lentiviruses as the vector of choice. Assessment of the vector titer and transduction efficiency of the cell product is critical for these studies. Efficacy and safety of the modified cell product are commonly determined by assessing the vector copy number (VCN) using qPCR. However, this optimized and well-established method in the GT field is based on bulk population averages, which can lead to misinterpretation of the actual VCN per transduced cell. Therefore, we introduce here a single cell-based method that allows to unmask cellular heterogeneity in the GT product, even when antibodies are not available. We use Invitrogen’s flow cytometry-based PrimeFlow™ RNA Assay with customized probes to determine transduction efficiency of transgenes of interest, promoter strength, and the cellular heterogeneity of murine and human stem cells. The assay has good specificity and sensitivity to detect the transgenes, as shown by the high correlations between PrimeFlow™-positive cells and the VCN. Differences in promoter strengths can readily be detected by differences in percentages and fluorescence intensity. Hence, we show a customizable method that allows to determine the number of transduced cells and the actual VCN per transduced cell in a GT product. The assay is suitable for all therapeutic genes for which antibodies are not available or too cumbersome for routine flow cytometry. The method also allows co-staining of surface markers to analyze differential transduction efficiencies in subpopulations of target cells. Frontiers Media S.A. 2021-01-28 /pmc/articles/PMC7876092/ /pubmed/33584681 http://dx.doi.org/10.3389/fimmu.2020.607991 Text en Copyright © 2021 Garcia-Perez, van Eggermond, Maietta, van der Hoorn, Pike-Overzet and Staal http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Garcia-Perez, Laura
van Eggermond, Marja C.J.A.
Maietta, Elisa
van der Hoorn, Marie-Louise P.
Pike-Overzet, Karin
Staal, Frank J. T.
A Novel Branched DNA-Based Flowcytometric Method for Single-Cell Characterization of Gene Therapy Products and Expression of Therapeutic Genes
title A Novel Branched DNA-Based Flowcytometric Method for Single-Cell Characterization of Gene Therapy Products and Expression of Therapeutic Genes
title_full A Novel Branched DNA-Based Flowcytometric Method for Single-Cell Characterization of Gene Therapy Products and Expression of Therapeutic Genes
title_fullStr A Novel Branched DNA-Based Flowcytometric Method for Single-Cell Characterization of Gene Therapy Products and Expression of Therapeutic Genes
title_full_unstemmed A Novel Branched DNA-Based Flowcytometric Method for Single-Cell Characterization of Gene Therapy Products and Expression of Therapeutic Genes
title_short A Novel Branched DNA-Based Flowcytometric Method for Single-Cell Characterization of Gene Therapy Products and Expression of Therapeutic Genes
title_sort novel branched dna-based flowcytometric method for single-cell characterization of gene therapy products and expression of therapeutic genes
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7876092/
https://www.ncbi.nlm.nih.gov/pubmed/33584681
http://dx.doi.org/10.3389/fimmu.2020.607991
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