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Lyophilized Progenitor Tenocyte Extracts: Sterilizable Cytotherapeutic Derivatives with Antioxidant Properties and Hyaluronan Hydrogel Functionalization Effects

Cultured primary progenitor tenocytes in lyophilized form were previously shown to possess intrinsic antioxidant properties and hyaluronan-based hydrogel viscosity-modulating effects in vitro. The aim of this study was to prepare and functionally characterize several stabilized (lyophilized) cell-fr...

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Autores principales: Laurent, Alexis, Porcello, Alexandre, Jeannerat, Annick, Peneveyre, Cédric, Coeur, Agathe, Abdel-Sayed, Philippe, Scaletta, Corinne, Michetti, Murielle, de Buys Roessingh, Anthony, Jordan, Olivier, Allémann, Eric, Raffoul, Wassim, Hirt-Burri, Nathalie, Applegate, Lee Ann
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9854832/
https://www.ncbi.nlm.nih.gov/pubmed/36671025
http://dx.doi.org/10.3390/antiox12010163
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author Laurent, Alexis
Porcello, Alexandre
Jeannerat, Annick
Peneveyre, Cédric
Coeur, Agathe
Abdel-Sayed, Philippe
Scaletta, Corinne
Michetti, Murielle
de Buys Roessingh, Anthony
Jordan, Olivier
Allémann, Eric
Raffoul, Wassim
Hirt-Burri, Nathalie
Applegate, Lee Ann
author_facet Laurent, Alexis
Porcello, Alexandre
Jeannerat, Annick
Peneveyre, Cédric
Coeur, Agathe
Abdel-Sayed, Philippe
Scaletta, Corinne
Michetti, Murielle
de Buys Roessingh, Anthony
Jordan, Olivier
Allémann, Eric
Raffoul, Wassim
Hirt-Burri, Nathalie
Applegate, Lee Ann
author_sort Laurent, Alexis
collection PubMed
description Cultured primary progenitor tenocytes in lyophilized form were previously shown to possess intrinsic antioxidant properties and hyaluronan-based hydrogel viscosity-modulating effects in vitro. The aim of this study was to prepare and functionally characterize several stabilized (lyophilized) cell-free progenitor tenocyte extracts for inclusion in cytotherapy-inspired complex injectable preparations. Fractionation and sterilization methods were included in specific biotechnological manufacturing workflows of such extracts. Comparative and functional-oriented characterizations of the various extracts were performed using several orthogonal descriptive, colorimetric, rheological, mechanical, and proteomic readouts. Specifically, an optimal sugar-based (saccharose/dextran) excipient formula was retained to produce sterilizable cytotherapeutic derivatives with appropriate functions. It was shown that extracts containing soluble cell-derived fractions possessed conserved and significant antioxidant properties (TEAC) compared to the freshly harvested cellular starting materials. Progenitor tenocyte extracts submitted to sub-micron filtration (0.22 µm) and (60)Co gamma irradiation terminal sterilization (5–50 kGy) were shown to retain significant antioxidant properties and hyaluronan-based hydrogel viscosity modulating effects. Hydrogel combination products displayed important efficacy-related characteristics (friction modulation, tendon bioadhesivity) with significant (p < 0.05) protective effects of the cellular extracts in oxidative environments. Overall, the present study sets forth robust control methodologies (antioxidant assays, H(2)O(2)-challenged rheological setups) for stabilized cell-free progenitor tenocyte extracts. Importantly, it was shown that highly sensitive phases of cytotherapeutic derivative manufacturing process development (purification, terminal sterilization) allowed for the conservation of critical biological extract attributes.
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spelling pubmed-98548322023-01-21 Lyophilized Progenitor Tenocyte Extracts: Sterilizable Cytotherapeutic Derivatives with Antioxidant Properties and Hyaluronan Hydrogel Functionalization Effects Laurent, Alexis Porcello, Alexandre Jeannerat, Annick Peneveyre, Cédric Coeur, Agathe Abdel-Sayed, Philippe Scaletta, Corinne Michetti, Murielle de Buys Roessingh, Anthony Jordan, Olivier Allémann, Eric Raffoul, Wassim Hirt-Burri, Nathalie Applegate, Lee Ann Antioxidants (Basel) Article Cultured primary progenitor tenocytes in lyophilized form were previously shown to possess intrinsic antioxidant properties and hyaluronan-based hydrogel viscosity-modulating effects in vitro. The aim of this study was to prepare and functionally characterize several stabilized (lyophilized) cell-free progenitor tenocyte extracts for inclusion in cytotherapy-inspired complex injectable preparations. Fractionation and sterilization methods were included in specific biotechnological manufacturing workflows of such extracts. Comparative and functional-oriented characterizations of the various extracts were performed using several orthogonal descriptive, colorimetric, rheological, mechanical, and proteomic readouts. Specifically, an optimal sugar-based (saccharose/dextran) excipient formula was retained to produce sterilizable cytotherapeutic derivatives with appropriate functions. It was shown that extracts containing soluble cell-derived fractions possessed conserved and significant antioxidant properties (TEAC) compared to the freshly harvested cellular starting materials. Progenitor tenocyte extracts submitted to sub-micron filtration (0.22 µm) and (60)Co gamma irradiation terminal sterilization (5–50 kGy) were shown to retain significant antioxidant properties and hyaluronan-based hydrogel viscosity modulating effects. Hydrogel combination products displayed important efficacy-related characteristics (friction modulation, tendon bioadhesivity) with significant (p < 0.05) protective effects of the cellular extracts in oxidative environments. Overall, the present study sets forth robust control methodologies (antioxidant assays, H(2)O(2)-challenged rheological setups) for stabilized cell-free progenitor tenocyte extracts. Importantly, it was shown that highly sensitive phases of cytotherapeutic derivative manufacturing process development (purification, terminal sterilization) allowed for the conservation of critical biological extract attributes. MDPI 2023-01-10 /pmc/articles/PMC9854832/ /pubmed/36671025 http://dx.doi.org/10.3390/antiox12010163 Text en © 2023 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
Laurent, Alexis
Porcello, Alexandre
Jeannerat, Annick
Peneveyre, Cédric
Coeur, Agathe
Abdel-Sayed, Philippe
Scaletta, Corinne
Michetti, Murielle
de Buys Roessingh, Anthony
Jordan, Olivier
Allémann, Eric
Raffoul, Wassim
Hirt-Burri, Nathalie
Applegate, Lee Ann
Lyophilized Progenitor Tenocyte Extracts: Sterilizable Cytotherapeutic Derivatives with Antioxidant Properties and Hyaluronan Hydrogel Functionalization Effects
title Lyophilized Progenitor Tenocyte Extracts: Sterilizable Cytotherapeutic Derivatives with Antioxidant Properties and Hyaluronan Hydrogel Functionalization Effects
title_full Lyophilized Progenitor Tenocyte Extracts: Sterilizable Cytotherapeutic Derivatives with Antioxidant Properties and Hyaluronan Hydrogel Functionalization Effects
title_fullStr Lyophilized Progenitor Tenocyte Extracts: Sterilizable Cytotherapeutic Derivatives with Antioxidant Properties and Hyaluronan Hydrogel Functionalization Effects
title_full_unstemmed Lyophilized Progenitor Tenocyte Extracts: Sterilizable Cytotherapeutic Derivatives with Antioxidant Properties and Hyaluronan Hydrogel Functionalization Effects
title_short Lyophilized Progenitor Tenocyte Extracts: Sterilizable Cytotherapeutic Derivatives with Antioxidant Properties and Hyaluronan Hydrogel Functionalization Effects
title_sort lyophilized progenitor tenocyte extracts: sterilizable cytotherapeutic derivatives with antioxidant properties and hyaluronan hydrogel functionalization effects
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9854832/
https://www.ncbi.nlm.nih.gov/pubmed/36671025
http://dx.doi.org/10.3390/antiox12010163
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