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Characterization and Safety Profile of a New Combined Advanced Therapeutic Medical Product Platelet Lysate-Based Fibrin Hydrogel for Mesenchymal Stromal Cell Local Delivery in Regenerative Medicine

Adipose-derived mesenchymal stromal cells (ASC) transplant to recover the optimal tissue structure/function relationship is a promising strategy to regenerate tissue lesions. Because filling local tissue defects by injection alone is often challenging, designing adequate cell carriers with suitable...

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Autores principales: Canceill, Thibault, Jourdan, Géraldine, Kémoun, Philippe, Guissard, Christophe, Monsef, Yanad Abou, Bourdens, Marion, Chaput, Benoit, Cavalie, Sandrine, Casteilla, Louis, Planat-Bénard, Valérie, Monsarrat, Paul, Raymond-Letron, Isabelle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916739/
https://www.ncbi.nlm.nih.gov/pubmed/36768532
http://dx.doi.org/10.3390/ijms24032206
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author Canceill, Thibault
Jourdan, Géraldine
Kémoun, Philippe
Guissard, Christophe
Monsef, Yanad Abou
Bourdens, Marion
Chaput, Benoit
Cavalie, Sandrine
Casteilla, Louis
Planat-Bénard, Valérie
Monsarrat, Paul
Raymond-Letron, Isabelle
author_facet Canceill, Thibault
Jourdan, Géraldine
Kémoun, Philippe
Guissard, Christophe
Monsef, Yanad Abou
Bourdens, Marion
Chaput, Benoit
Cavalie, Sandrine
Casteilla, Louis
Planat-Bénard, Valérie
Monsarrat, Paul
Raymond-Letron, Isabelle
author_sort Canceill, Thibault
collection PubMed
description Adipose-derived mesenchymal stromal cells (ASC) transplant to recover the optimal tissue structure/function relationship is a promising strategy to regenerate tissue lesions. Because filling local tissue defects by injection alone is often challenging, designing adequate cell carriers with suitable characteristics is critical for in situ ASC delivery. The aim of this study was to optimize the generation phase of a platelet–lysate-based fibrin hydrogel (PLFH) as a proper carrier for in situ ASC implantation and (1) to investigate in vitro PLFH biomechanical properties, cell viability, proliferation and migration sustainability, and (2) to comprehensively assess the local in vivo PLFH/ASC safety profile (local tolerance, ASC fate, biodistribution and toxicity). We first defined the experimental conditions to enhance physicochemical properties and microscopic features of PLFH as an adequate ASC vehicle. When ASC were mixed with PLFH, in vitro assays exhibited hydrogel supporting cell migration, viability and proliferation. In vivo local subcutaneous and subgingival PLFH/ASC administration in nude mice allowed us to generate biosafety data, including biodegradability, tolerance, ASC fate and engraftment, and the absence of biodistribution and toxicity to non-target tissues. Our data strongly suggest that this novel combined ATMP for in situ administration is safe with an efficient local ASC engraftment, supporting the further development for human clinical cell therapy.
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spelling pubmed-99167392023-02-11 Characterization and Safety Profile of a New Combined Advanced Therapeutic Medical Product Platelet Lysate-Based Fibrin Hydrogel for Mesenchymal Stromal Cell Local Delivery in Regenerative Medicine Canceill, Thibault Jourdan, Géraldine Kémoun, Philippe Guissard, Christophe Monsef, Yanad Abou Bourdens, Marion Chaput, Benoit Cavalie, Sandrine Casteilla, Louis Planat-Bénard, Valérie Monsarrat, Paul Raymond-Letron, Isabelle Int J Mol Sci Article Adipose-derived mesenchymal stromal cells (ASC) transplant to recover the optimal tissue structure/function relationship is a promising strategy to regenerate tissue lesions. Because filling local tissue defects by injection alone is often challenging, designing adequate cell carriers with suitable characteristics is critical for in situ ASC delivery. The aim of this study was to optimize the generation phase of a platelet–lysate-based fibrin hydrogel (PLFH) as a proper carrier for in situ ASC implantation and (1) to investigate in vitro PLFH biomechanical properties, cell viability, proliferation and migration sustainability, and (2) to comprehensively assess the local in vivo PLFH/ASC safety profile (local tolerance, ASC fate, biodistribution and toxicity). We first defined the experimental conditions to enhance physicochemical properties and microscopic features of PLFH as an adequate ASC vehicle. When ASC were mixed with PLFH, in vitro assays exhibited hydrogel supporting cell migration, viability and proliferation. In vivo local subcutaneous and subgingival PLFH/ASC administration in nude mice allowed us to generate biosafety data, including biodegradability, tolerance, ASC fate and engraftment, and the absence of biodistribution and toxicity to non-target tissues. Our data strongly suggest that this novel combined ATMP for in situ administration is safe with an efficient local ASC engraftment, supporting the further development for human clinical cell therapy. MDPI 2023-01-22 /pmc/articles/PMC9916739/ /pubmed/36768532 http://dx.doi.org/10.3390/ijms24032206 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
Canceill, Thibault
Jourdan, Géraldine
Kémoun, Philippe
Guissard, Christophe
Monsef, Yanad Abou
Bourdens, Marion
Chaput, Benoit
Cavalie, Sandrine
Casteilla, Louis
Planat-Bénard, Valérie
Monsarrat, Paul
Raymond-Letron, Isabelle
Characterization and Safety Profile of a New Combined Advanced Therapeutic Medical Product Platelet Lysate-Based Fibrin Hydrogel for Mesenchymal Stromal Cell Local Delivery in Regenerative Medicine
title Characterization and Safety Profile of a New Combined Advanced Therapeutic Medical Product Platelet Lysate-Based Fibrin Hydrogel for Mesenchymal Stromal Cell Local Delivery in Regenerative Medicine
title_full Characterization and Safety Profile of a New Combined Advanced Therapeutic Medical Product Platelet Lysate-Based Fibrin Hydrogel for Mesenchymal Stromal Cell Local Delivery in Regenerative Medicine
title_fullStr Characterization and Safety Profile of a New Combined Advanced Therapeutic Medical Product Platelet Lysate-Based Fibrin Hydrogel for Mesenchymal Stromal Cell Local Delivery in Regenerative Medicine
title_full_unstemmed Characterization and Safety Profile of a New Combined Advanced Therapeutic Medical Product Platelet Lysate-Based Fibrin Hydrogel for Mesenchymal Stromal Cell Local Delivery in Regenerative Medicine
title_short Characterization and Safety Profile of a New Combined Advanced Therapeutic Medical Product Platelet Lysate-Based Fibrin Hydrogel for Mesenchymal Stromal Cell Local Delivery in Regenerative Medicine
title_sort characterization and safety profile of a new combined advanced therapeutic medical product platelet lysate-based fibrin hydrogel for mesenchymal stromal cell local delivery in regenerative medicine
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916739/
https://www.ncbi.nlm.nih.gov/pubmed/36768532
http://dx.doi.org/10.3390/ijms24032206
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