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Micro-fragmented and nanofat adipose tissue derivatives: In vitro qualitative and quantitative analysis

Introduction: Adipose tissue is widely exploited in regenerative medicine thanks to its trophic properties, mainly based on the presence of adipose-derived stromal cells. Numerous devices have been developed to promote its clinical use, leading to the introduction of one-step surgical procedures to...

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Autores principales: Cicione, Claudia, Vadalà, Gianluca, Di Giacomo, Giuseppina, Tilotta, Veronica, Ambrosio, Luca, Russo, Fabrizio, Zampogna, Biagio, Cannata, Francesca, Papalia, Rocco, Denaro, Vincenzo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9887143/
https://www.ncbi.nlm.nih.gov/pubmed/36733959
http://dx.doi.org/10.3389/fbioe.2023.911600
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author Cicione, Claudia
Vadalà, Gianluca
Di Giacomo, Giuseppina
Tilotta, Veronica
Ambrosio, Luca
Russo, Fabrizio
Zampogna, Biagio
Cannata, Francesca
Papalia, Rocco
Denaro, Vincenzo
author_facet Cicione, Claudia
Vadalà, Gianluca
Di Giacomo, Giuseppina
Tilotta, Veronica
Ambrosio, Luca
Russo, Fabrizio
Zampogna, Biagio
Cannata, Francesca
Papalia, Rocco
Denaro, Vincenzo
author_sort Cicione, Claudia
collection PubMed
description Introduction: Adipose tissue is widely exploited in regenerative medicine thanks to its trophic properties, mainly based on the presence of adipose-derived stromal cells. Numerous devices have been developed to promote its clinical use, leading to the introduction of one-step surgical procedures to obtain minimally manipulated adipose tissue derivatives. However, only a few studies compared their biological properties. This study aimed to characterize micro-fragmented (MAT) and nanofat adipose tissue (NAT) obtained with two different techniques. Methods: MAT, NAT and unprocessed lipoaspirate were collected from surgical specimens. RNA extraction and collagenase isolation of stromal vascular fraction (SVF) were performed. Tissue sections were analysed by histological and immunohistochemical (collagen type I, CD31, CD34 and PCNA) staining to assess tissue morphology and cell content. qPCR was performed to evaluate the expression of stemness-related (SOX2, NANOG and OCT3/4), extracellular matrix (COL1A1) and inflammatory genes (IL1β, IL6 and iNOS). Furthermore, multilineage differentiation was assessed following culture in adipogenic and osteogenic media and staining with Oil Red O and Alizarin red. ASC immunophenotype was assessed by flow cytometric analysis of CD90, CD105, CD73 and CD45. Results: Histological and immunohistochemical results showed an increased amount of stroma and a reduction of adipocytes in MAT and NAT, with the latter displaying the highest content of collagen type I, CD31, CD34 and PCNA. From LA to MAT and NAT, an increasing expression of NANOG, SOX2, OCT3/4, COL1A1 and IL6 was noted, while no significant differences in terms of IL1β and iNOS emerged. No statistically significant differences were noted between NAT and SVF in terms of stemness-related genes, while the latter demonstrated a significantly higher expression of stress-related markers. SVF cells derived from all three samples (LA, MAT, and NAT) showed a similar ASC immunoprofile as well as osteogenic and adipogenic differentiation. Discussion: Our results showed that both MAT and NAT techniques allowed the rapid isolation of ASC-rich grafts with a high anabolic and proliferative potential. However, NAT showed the highest levels of extracellular matrix content, replicating cells, and stemness gene expression. These results may provide precious clues for the use of adipose tissue derivatives in the clinical setting.
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spelling pubmed-98871432023-02-01 Micro-fragmented and nanofat adipose tissue derivatives: In vitro qualitative and quantitative analysis Cicione, Claudia Vadalà, Gianluca Di Giacomo, Giuseppina Tilotta, Veronica Ambrosio, Luca Russo, Fabrizio Zampogna, Biagio Cannata, Francesca Papalia, Rocco Denaro, Vincenzo Front Bioeng Biotechnol Bioengineering and Biotechnology Introduction: Adipose tissue is widely exploited in regenerative medicine thanks to its trophic properties, mainly based on the presence of adipose-derived stromal cells. Numerous devices have been developed to promote its clinical use, leading to the introduction of one-step surgical procedures to obtain minimally manipulated adipose tissue derivatives. However, only a few studies compared their biological properties. This study aimed to characterize micro-fragmented (MAT) and nanofat adipose tissue (NAT) obtained with two different techniques. Methods: MAT, NAT and unprocessed lipoaspirate were collected from surgical specimens. RNA extraction and collagenase isolation of stromal vascular fraction (SVF) were performed. Tissue sections were analysed by histological and immunohistochemical (collagen type I, CD31, CD34 and PCNA) staining to assess tissue morphology and cell content. qPCR was performed to evaluate the expression of stemness-related (SOX2, NANOG and OCT3/4), extracellular matrix (COL1A1) and inflammatory genes (IL1β, IL6 and iNOS). Furthermore, multilineage differentiation was assessed following culture in adipogenic and osteogenic media and staining with Oil Red O and Alizarin red. ASC immunophenotype was assessed by flow cytometric analysis of CD90, CD105, CD73 and CD45. Results: Histological and immunohistochemical results showed an increased amount of stroma and a reduction of adipocytes in MAT and NAT, with the latter displaying the highest content of collagen type I, CD31, CD34 and PCNA. From LA to MAT and NAT, an increasing expression of NANOG, SOX2, OCT3/4, COL1A1 and IL6 was noted, while no significant differences in terms of IL1β and iNOS emerged. No statistically significant differences were noted between NAT and SVF in terms of stemness-related genes, while the latter demonstrated a significantly higher expression of stress-related markers. SVF cells derived from all three samples (LA, MAT, and NAT) showed a similar ASC immunoprofile as well as osteogenic and adipogenic differentiation. Discussion: Our results showed that both MAT and NAT techniques allowed the rapid isolation of ASC-rich grafts with a high anabolic and proliferative potential. However, NAT showed the highest levels of extracellular matrix content, replicating cells, and stemness gene expression. These results may provide precious clues for the use of adipose tissue derivatives in the clinical setting. Frontiers Media S.A. 2023-01-17 /pmc/articles/PMC9887143/ /pubmed/36733959 http://dx.doi.org/10.3389/fbioe.2023.911600 Text en Copyright © 2023 Cicione, Vadalà, Di Giacomo, Tilotta, Ambrosio, Russo, Zampogna, Cannata, Papalia and Denaro. https://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 Bioengineering and Biotechnology
Cicione, Claudia
Vadalà, Gianluca
Di Giacomo, Giuseppina
Tilotta, Veronica
Ambrosio, Luca
Russo, Fabrizio
Zampogna, Biagio
Cannata, Francesca
Papalia, Rocco
Denaro, Vincenzo
Micro-fragmented and nanofat adipose tissue derivatives: In vitro qualitative and quantitative analysis
title Micro-fragmented and nanofat adipose tissue derivatives: In vitro qualitative and quantitative analysis
title_full Micro-fragmented and nanofat adipose tissue derivatives: In vitro qualitative and quantitative analysis
title_fullStr Micro-fragmented and nanofat adipose tissue derivatives: In vitro qualitative and quantitative analysis
title_full_unstemmed Micro-fragmented and nanofat adipose tissue derivatives: In vitro qualitative and quantitative analysis
title_short Micro-fragmented and nanofat adipose tissue derivatives: In vitro qualitative and quantitative analysis
title_sort micro-fragmented and nanofat adipose tissue derivatives: in vitro qualitative and quantitative analysis
topic Bioengineering and Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9887143/
https://www.ncbi.nlm.nih.gov/pubmed/36733959
http://dx.doi.org/10.3389/fbioe.2023.911600
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