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Successful Low-Cost Scaffold-Free Cartilage Tissue Engineering Using Human Cartilage Progenitor Cell Spheroids Formed by Micromolded Nonadhesive Hydrogel

The scaffold-free tissue engineering using spheroids is pointed out as an approach for optimizing the delivery system of cartilage construct. In this study, we aimed to evaluate the micromolded nonadhesive hydrogel (MicroTissues®) for spheroid compaction (2-day culture) and spontaneous chondrogenesi...

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Autores principales: Stuart, Mellannie P., Matsui, Renata A. M., Santos, Matheus F. S., Côrtes, Isis, Azevedo, Mayra S., Silva, Karina R., Beatrici, Anderson, Leite, Paulo Emílio C., Falagan-Lotsch, Priscila, Granjeiro, José M., Mironov, Vladimir, Baptista, Leandra S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5750468/
https://www.ncbi.nlm.nih.gov/pubmed/29527227
http://dx.doi.org/10.1155/2017/7053465
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author Stuart, Mellannie P.
Matsui, Renata A. M.
Santos, Matheus F. S.
Côrtes, Isis
Azevedo, Mayra S.
Silva, Karina R.
Beatrici, Anderson
Leite, Paulo Emílio C.
Falagan-Lotsch, Priscila
Granjeiro, José M.
Mironov, Vladimir
Baptista, Leandra S.
author_facet Stuart, Mellannie P.
Matsui, Renata A. M.
Santos, Matheus F. S.
Côrtes, Isis
Azevedo, Mayra S.
Silva, Karina R.
Beatrici, Anderson
Leite, Paulo Emílio C.
Falagan-Lotsch, Priscila
Granjeiro, José M.
Mironov, Vladimir
Baptista, Leandra S.
author_sort Stuart, Mellannie P.
collection PubMed
description The scaffold-free tissue engineering using spheroids is pointed out as an approach for optimizing the delivery system of cartilage construct. In this study, we aimed to evaluate the micromolded nonadhesive hydrogel (MicroTissues®) for spheroid compaction (2-day culture) and spontaneous chondrogenesis (21-day culture) using cartilage progenitors cells (CPCs) from human nasal septum without chondrogenic stimulus. CPC spheroids showed diameter stability (486 μm ± 65), high percentage of viable cells (88.1 ± 2.1), and low percentage of apoptotic cells (2.3%). After spheroid compaction, the synthesis of TGF-β1, TGF-β2, and TGF-β3 was significantly higher compared to monolayer (p < 0.005). Biomechanical assay revealed that the maximum forces applied to spheroids after chondrogenesis were 2.6 times higher than for those cultured for 2 days. After spontaneous chondrogenesis, CPC spheroids were entirely positive for N-cadherin, collagen type II and type VI, and aggrecan and chondroitin sulfate. Comparing to monolayer, the expression of SOX5 and SOX6 genes analyzed by qPCR was significantly upregulated (p < 0.01). Finally, we observed the capacity of CPC spheroids starting to fuse. To the best of our knowledge, this is the first time in the scientific literature that human CPC spheroids were formed by micromolded nonadhesive hydrogel, achieving a successful scaffold-free cartilage engineering without chondrogenic stimulus (low cost).
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spelling pubmed-57504682018-03-11 Successful Low-Cost Scaffold-Free Cartilage Tissue Engineering Using Human Cartilage Progenitor Cell Spheroids Formed by Micromolded Nonadhesive Hydrogel Stuart, Mellannie P. Matsui, Renata A. M. Santos, Matheus F. S. Côrtes, Isis Azevedo, Mayra S. Silva, Karina R. Beatrici, Anderson Leite, Paulo Emílio C. Falagan-Lotsch, Priscila Granjeiro, José M. Mironov, Vladimir Baptista, Leandra S. Stem Cells Int Research Article The scaffold-free tissue engineering using spheroids is pointed out as an approach for optimizing the delivery system of cartilage construct. In this study, we aimed to evaluate the micromolded nonadhesive hydrogel (MicroTissues®) for spheroid compaction (2-day culture) and spontaneous chondrogenesis (21-day culture) using cartilage progenitors cells (CPCs) from human nasal septum without chondrogenic stimulus. CPC spheroids showed diameter stability (486 μm ± 65), high percentage of viable cells (88.1 ± 2.1), and low percentage of apoptotic cells (2.3%). After spheroid compaction, the synthesis of TGF-β1, TGF-β2, and TGF-β3 was significantly higher compared to monolayer (p < 0.005). Biomechanical assay revealed that the maximum forces applied to spheroids after chondrogenesis were 2.6 times higher than for those cultured for 2 days. After spontaneous chondrogenesis, CPC spheroids were entirely positive for N-cadherin, collagen type II and type VI, and aggrecan and chondroitin sulfate. Comparing to monolayer, the expression of SOX5 and SOX6 genes analyzed by qPCR was significantly upregulated (p < 0.01). Finally, we observed the capacity of CPC spheroids starting to fuse. To the best of our knowledge, this is the first time in the scientific literature that human CPC spheroids were formed by micromolded nonadhesive hydrogel, achieving a successful scaffold-free cartilage engineering without chondrogenic stimulus (low cost). Hindawi 2017 2017-12-20 /pmc/articles/PMC5750468/ /pubmed/29527227 http://dx.doi.org/10.1155/2017/7053465 Text en Copyright © 2017 Mellannie P. Stuart et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Stuart, Mellannie P.
Matsui, Renata A. M.
Santos, Matheus F. S.
Côrtes, Isis
Azevedo, Mayra S.
Silva, Karina R.
Beatrici, Anderson
Leite, Paulo Emílio C.
Falagan-Lotsch, Priscila
Granjeiro, José M.
Mironov, Vladimir
Baptista, Leandra S.
Successful Low-Cost Scaffold-Free Cartilage Tissue Engineering Using Human Cartilage Progenitor Cell Spheroids Formed by Micromolded Nonadhesive Hydrogel
title Successful Low-Cost Scaffold-Free Cartilage Tissue Engineering Using Human Cartilage Progenitor Cell Spheroids Formed by Micromolded Nonadhesive Hydrogel
title_full Successful Low-Cost Scaffold-Free Cartilage Tissue Engineering Using Human Cartilage Progenitor Cell Spheroids Formed by Micromolded Nonadhesive Hydrogel
title_fullStr Successful Low-Cost Scaffold-Free Cartilage Tissue Engineering Using Human Cartilage Progenitor Cell Spheroids Formed by Micromolded Nonadhesive Hydrogel
title_full_unstemmed Successful Low-Cost Scaffold-Free Cartilage Tissue Engineering Using Human Cartilage Progenitor Cell Spheroids Formed by Micromolded Nonadhesive Hydrogel
title_short Successful Low-Cost Scaffold-Free Cartilage Tissue Engineering Using Human Cartilage Progenitor Cell Spheroids Formed by Micromolded Nonadhesive Hydrogel
title_sort successful low-cost scaffold-free cartilage tissue engineering using human cartilage progenitor cell spheroids formed by micromolded nonadhesive hydrogel
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5750468/
https://www.ncbi.nlm.nih.gov/pubmed/29527227
http://dx.doi.org/10.1155/2017/7053465
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