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Non-Clinical In Vitro Evaluation of Antibiotic Resistance Gene-Free Plasmids Encoding Human or Murine IL-12 Intended for First-in-Human Clinical Study

Interleukin 12 (IL-12) is a key cytokine that mediates antitumor activity of immune cells. To fulfill its clinical potential, the development is focused on localized delivery systems, such as gene electrotransfer, which can provide localized delivery of IL-12 to the tumor microenvironment. Gene elec...

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Autores principales: Kos, Spela, Bosnjak, Masa, Jesenko, Tanja, Markelc, Bostjan, Kamensek, Urska, Znidar, Katarina, Matkovic, Urska, Rencelj, Andrej, Sersa, Gregor, Hudej, Rosana, Tuljak, Aneja, Peterka, Matjaz, Cemazar, Maja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8539770/
https://www.ncbi.nlm.nih.gov/pubmed/34684032
http://dx.doi.org/10.3390/pharmaceutics13101739
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author Kos, Spela
Bosnjak, Masa
Jesenko, Tanja
Markelc, Bostjan
Kamensek, Urska
Znidar, Katarina
Matkovic, Urska
Rencelj, Andrej
Sersa, Gregor
Hudej, Rosana
Tuljak, Aneja
Peterka, Matjaz
Cemazar, Maja
author_facet Kos, Spela
Bosnjak, Masa
Jesenko, Tanja
Markelc, Bostjan
Kamensek, Urska
Znidar, Katarina
Matkovic, Urska
Rencelj, Andrej
Sersa, Gregor
Hudej, Rosana
Tuljak, Aneja
Peterka, Matjaz
Cemazar, Maja
author_sort Kos, Spela
collection PubMed
description Interleukin 12 (IL-12) is a key cytokine that mediates antitumor activity of immune cells. To fulfill its clinical potential, the development is focused on localized delivery systems, such as gene electrotransfer, which can provide localized delivery of IL-12 to the tumor microenvironment. Gene electrotransfer of the plasmid encoding human IL-12 is already in clinical trials in USA, demonstrating positive results in the treatment of melanoma patients. To comply with EU regulatory requirements for clinical application, which recommend the use of antibiotic resistance gene-free plasmids, we constructed and developed the production process for the clinical grade quality antibiotic resistance gene-free plasmid encoding human IL-12 (p21-hIL-12-ORT) and its ortholog encoding murine IL-12 (p21-mIL-12-ORT). To demonstrate the suitability of the p21-hIL-12-ORT or p21-mIL-12-ORT plasmid for the first-in-human clinical trial, the biological activity of the expressed transgene, its level of expression and plasmid copy number were determined in vitro in the human squamous cell carcinoma cell line FaDu and the murine colon carcinoma cell line CT26. The results of the non-clinical evaluation in vitro set the basis for further in vivo testing and evaluation of antitumor activity of therapeutic molecules in murine models as well as provide crucial data for further clinical trials of the constructed antibiotic resistance gene-free plasmid in humans.
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spelling pubmed-85397702021-10-24 Non-Clinical In Vitro Evaluation of Antibiotic Resistance Gene-Free Plasmids Encoding Human or Murine IL-12 Intended for First-in-Human Clinical Study Kos, Spela Bosnjak, Masa Jesenko, Tanja Markelc, Bostjan Kamensek, Urska Znidar, Katarina Matkovic, Urska Rencelj, Andrej Sersa, Gregor Hudej, Rosana Tuljak, Aneja Peterka, Matjaz Cemazar, Maja Pharmaceutics Article Interleukin 12 (IL-12) is a key cytokine that mediates antitumor activity of immune cells. To fulfill its clinical potential, the development is focused on localized delivery systems, such as gene electrotransfer, which can provide localized delivery of IL-12 to the tumor microenvironment. Gene electrotransfer of the plasmid encoding human IL-12 is already in clinical trials in USA, demonstrating positive results in the treatment of melanoma patients. To comply with EU regulatory requirements for clinical application, which recommend the use of antibiotic resistance gene-free plasmids, we constructed and developed the production process for the clinical grade quality antibiotic resistance gene-free plasmid encoding human IL-12 (p21-hIL-12-ORT) and its ortholog encoding murine IL-12 (p21-mIL-12-ORT). To demonstrate the suitability of the p21-hIL-12-ORT or p21-mIL-12-ORT plasmid for the first-in-human clinical trial, the biological activity of the expressed transgene, its level of expression and plasmid copy number were determined in vitro in the human squamous cell carcinoma cell line FaDu and the murine colon carcinoma cell line CT26. The results of the non-clinical evaluation in vitro set the basis for further in vivo testing and evaluation of antitumor activity of therapeutic molecules in murine models as well as provide crucial data for further clinical trials of the constructed antibiotic resistance gene-free plasmid in humans. MDPI 2021-10-19 /pmc/articles/PMC8539770/ /pubmed/34684032 http://dx.doi.org/10.3390/pharmaceutics13101739 Text en © 2021 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
Kos, Spela
Bosnjak, Masa
Jesenko, Tanja
Markelc, Bostjan
Kamensek, Urska
Znidar, Katarina
Matkovic, Urska
Rencelj, Andrej
Sersa, Gregor
Hudej, Rosana
Tuljak, Aneja
Peterka, Matjaz
Cemazar, Maja
Non-Clinical In Vitro Evaluation of Antibiotic Resistance Gene-Free Plasmids Encoding Human or Murine IL-12 Intended for First-in-Human Clinical Study
title Non-Clinical In Vitro Evaluation of Antibiotic Resistance Gene-Free Plasmids Encoding Human or Murine IL-12 Intended for First-in-Human Clinical Study
title_full Non-Clinical In Vitro Evaluation of Antibiotic Resistance Gene-Free Plasmids Encoding Human or Murine IL-12 Intended for First-in-Human Clinical Study
title_fullStr Non-Clinical In Vitro Evaluation of Antibiotic Resistance Gene-Free Plasmids Encoding Human or Murine IL-12 Intended for First-in-Human Clinical Study
title_full_unstemmed Non-Clinical In Vitro Evaluation of Antibiotic Resistance Gene-Free Plasmids Encoding Human or Murine IL-12 Intended for First-in-Human Clinical Study
title_short Non-Clinical In Vitro Evaluation of Antibiotic Resistance Gene-Free Plasmids Encoding Human or Murine IL-12 Intended for First-in-Human Clinical Study
title_sort non-clinical in vitro evaluation of antibiotic resistance gene-free plasmids encoding human or murine il-12 intended for first-in-human clinical study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8539770/
https://www.ncbi.nlm.nih.gov/pubmed/34684032
http://dx.doi.org/10.3390/pharmaceutics13101739
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