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Predicting Transiently Expressed Protein Yields: Comparison of Transfection Methods in CHO and HEK293

Therapeutic proteins are currently at the apex of innovation in pharmaceutical medicine. However, their industrial production is technically challenging and improved methods for transient transfection of mammalian cell cultures are necessary. We aimed to find a fast, microliter-scale transfection as...

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Autores principales: Porosk, Ly, Nebogatova, Jekaterina, Härk, Heleri Heike, Vunk, Birgit, Arukuusk, Piret, Toots, Urve, Ustav, Mart, Langel, Ülo, Kurrikoff, Kaido
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9505259/
https://www.ncbi.nlm.nih.gov/pubmed/36145697
http://dx.doi.org/10.3390/pharmaceutics14091949
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author Porosk, Ly
Nebogatova, Jekaterina
Härk, Heleri Heike
Vunk, Birgit
Arukuusk, Piret
Toots, Urve
Ustav, Mart
Langel, Ülo
Kurrikoff, Kaido
author_facet Porosk, Ly
Nebogatova, Jekaterina
Härk, Heleri Heike
Vunk, Birgit
Arukuusk, Piret
Toots, Urve
Ustav, Mart
Langel, Ülo
Kurrikoff, Kaido
author_sort Porosk, Ly
collection PubMed
description Therapeutic proteins are currently at the apex of innovation in pharmaceutical medicine. However, their industrial production is technically challenging and improved methods for transient transfection of mammalian cell cultures are necessary. We aimed to find a fast, microliter-scale transfection assay that allows the prediction of protein expression in the transient production settings. We used an array of lipid, polymeric and cell-penetrating peptide transfection reagents, and compared their performance in various high throughput transfection assays to their performance in protein (antibody) expression in professional protein-producer cell lines. First, we show that some of the most frequently used microliter-scale transfection efficacy assays fail to predict performance in the protein production in milliliter and liter scale settings. We found that CHO suspension culture post-transfection EGFP(+) population and SEAP quantitation correlate with large-scale protein production, whereas the adhesion culture assays and transfection of pLuc are non-predictive. Second, we demonstrated that cell-penetrating peptide-based transfection achieves significantly higher protein yields compared to PEI and lipoplex methods in both CHO and HEK293 producer cell lines. In this work we demonstrate a CPP-based transient protein expression approach that significantly outperformed the current industry standard workhorse method of PEI.
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spelling pubmed-95052592022-09-24 Predicting Transiently Expressed Protein Yields: Comparison of Transfection Methods in CHO and HEK293 Porosk, Ly Nebogatova, Jekaterina Härk, Heleri Heike Vunk, Birgit Arukuusk, Piret Toots, Urve Ustav, Mart Langel, Ülo Kurrikoff, Kaido Pharmaceutics Article Therapeutic proteins are currently at the apex of innovation in pharmaceutical medicine. However, their industrial production is technically challenging and improved methods for transient transfection of mammalian cell cultures are necessary. We aimed to find a fast, microliter-scale transfection assay that allows the prediction of protein expression in the transient production settings. We used an array of lipid, polymeric and cell-penetrating peptide transfection reagents, and compared their performance in various high throughput transfection assays to their performance in protein (antibody) expression in professional protein-producer cell lines. First, we show that some of the most frequently used microliter-scale transfection efficacy assays fail to predict performance in the protein production in milliliter and liter scale settings. We found that CHO suspension culture post-transfection EGFP(+) population and SEAP quantitation correlate with large-scale protein production, whereas the adhesion culture assays and transfection of pLuc are non-predictive. Second, we demonstrated that cell-penetrating peptide-based transfection achieves significantly higher protein yields compared to PEI and lipoplex methods in both CHO and HEK293 producer cell lines. In this work we demonstrate a CPP-based transient protein expression approach that significantly outperformed the current industry standard workhorse method of PEI. MDPI 2022-09-14 /pmc/articles/PMC9505259/ /pubmed/36145697 http://dx.doi.org/10.3390/pharmaceutics14091949 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Porosk, Ly
Nebogatova, Jekaterina
Härk, Heleri Heike
Vunk, Birgit
Arukuusk, Piret
Toots, Urve
Ustav, Mart
Langel, Ülo
Kurrikoff, Kaido
Predicting Transiently Expressed Protein Yields: Comparison of Transfection Methods in CHO and HEK293
title Predicting Transiently Expressed Protein Yields: Comparison of Transfection Methods in CHO and HEK293
title_full Predicting Transiently Expressed Protein Yields: Comparison of Transfection Methods in CHO and HEK293
title_fullStr Predicting Transiently Expressed Protein Yields: Comparison of Transfection Methods in CHO and HEK293
title_full_unstemmed Predicting Transiently Expressed Protein Yields: Comparison of Transfection Methods in CHO and HEK293
title_short Predicting Transiently Expressed Protein Yields: Comparison of Transfection Methods in CHO and HEK293
title_sort predicting transiently expressed protein yields: comparison of transfection methods in cho and hek293
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9505259/
https://www.ncbi.nlm.nih.gov/pubmed/36145697
http://dx.doi.org/10.3390/pharmaceutics14091949
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