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Optimal culture conditions for neurosphere formation and neuronal differentiation from human dental pulp stem cells

OBJECTIVES: Human dental pulp stem cells (DPSCs) have been used to regenerate damaged nervous tissues. However, the methods of committing DPSCs into neural stem/progenitor cells (NSPCs) or neurospheres are highly diverse, resulting in many neuronal differentiation outcomes. This study aims to valida...

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Autores principales: GONMANEE, Thanasup, ARAYAPISIT, Tawepong, VONGSAVAN, Kutkao, PHRUKSANIYOM, Chareerut, SRITANAUDOMCHAI, Hathaitip
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Faculdade De Odontologia De Bauru - USP 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8523122/
https://www.ncbi.nlm.nih.gov/pubmed/34614124
http://dx.doi.org/10.1590/1678-7757-2021-0296
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author GONMANEE, Thanasup
ARAYAPISIT, Tawepong
VONGSAVAN, Kutkao
PHRUKSANIYOM, Chareerut
SRITANAUDOMCHAI, Hathaitip
author_facet GONMANEE, Thanasup
ARAYAPISIT, Tawepong
VONGSAVAN, Kutkao
PHRUKSANIYOM, Chareerut
SRITANAUDOMCHAI, Hathaitip
author_sort GONMANEE, Thanasup
collection PubMed
description OBJECTIVES: Human dental pulp stem cells (DPSCs) have been used to regenerate damaged nervous tissues. However, the methods of committing DPSCs into neural stem/progenitor cells (NSPCs) or neurospheres are highly diverse, resulting in many neuronal differentiation outcomes. This study aims to validate an optimal protocol for inducing DPSCs into neurospheres and neurons. METHODOLOGY: After isolation and characterization of mesenchymal stem cell identity, DPSCs were cultured in a NSPC induction medium and culture vessels. The durations of the culture, dissociation methods, and passage numbers of DPSCs were varied. RESULTS: Neurosphere formation requires a special surface that inhibits cell attachment. Five-days was the most appropriate duration for generating proliferative neurospheres and they strongly expressed Nestin, an NSPC marker. Neurosphere reformation after being dissociated by the Accutase enzyme was significantly higher than other methods. Passage number of DPSCs did not affect neurosphere formation, but did influence neuronal differentiation. We found that the cells expressing a neuronal marker, β-tubulin III, and exhibiting neuronal morphology were significantly higher in the early passage of the DPSCs. CONCLUSION: These results suggest a guideline to obtain a high efficiency of neurospheres and neuronal differentiation from DPSCs for further study and neurodegeneration therapeutics.
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spelling pubmed-85231222021-10-22 Optimal culture conditions for neurosphere formation and neuronal differentiation from human dental pulp stem cells GONMANEE, Thanasup ARAYAPISIT, Tawepong VONGSAVAN, Kutkao PHRUKSANIYOM, Chareerut SRITANAUDOMCHAI, Hathaitip J Appl Oral Sci Original Article OBJECTIVES: Human dental pulp stem cells (DPSCs) have been used to regenerate damaged nervous tissues. However, the methods of committing DPSCs into neural stem/progenitor cells (NSPCs) or neurospheres are highly diverse, resulting in many neuronal differentiation outcomes. This study aims to validate an optimal protocol for inducing DPSCs into neurospheres and neurons. METHODOLOGY: After isolation and characterization of mesenchymal stem cell identity, DPSCs were cultured in a NSPC induction medium and culture vessels. The durations of the culture, dissociation methods, and passage numbers of DPSCs were varied. RESULTS: Neurosphere formation requires a special surface that inhibits cell attachment. Five-days was the most appropriate duration for generating proliferative neurospheres and they strongly expressed Nestin, an NSPC marker. Neurosphere reformation after being dissociated by the Accutase enzyme was significantly higher than other methods. Passage number of DPSCs did not affect neurosphere formation, but did influence neuronal differentiation. We found that the cells expressing a neuronal marker, β-tubulin III, and exhibiting neuronal morphology were significantly higher in the early passage of the DPSCs. CONCLUSION: These results suggest a guideline to obtain a high efficiency of neurospheres and neuronal differentiation from DPSCs for further study and neurodegeneration therapeutics. Faculdade De Odontologia De Bauru - USP 2021-10-01 /pmc/articles/PMC8523122/ /pubmed/34614124 http://dx.doi.org/10.1590/1678-7757-2021-0296 Text en https://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
GONMANEE, Thanasup
ARAYAPISIT, Tawepong
VONGSAVAN, Kutkao
PHRUKSANIYOM, Chareerut
SRITANAUDOMCHAI, Hathaitip
Optimal culture conditions for neurosphere formation and neuronal differentiation from human dental pulp stem cells
title Optimal culture conditions for neurosphere formation and neuronal differentiation from human dental pulp stem cells
title_full Optimal culture conditions for neurosphere formation and neuronal differentiation from human dental pulp stem cells
title_fullStr Optimal culture conditions for neurosphere formation and neuronal differentiation from human dental pulp stem cells
title_full_unstemmed Optimal culture conditions for neurosphere formation and neuronal differentiation from human dental pulp stem cells
title_short Optimal culture conditions for neurosphere formation and neuronal differentiation from human dental pulp stem cells
title_sort optimal culture conditions for neurosphere formation and neuronal differentiation from human dental pulp stem cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8523122/
https://www.ncbi.nlm.nih.gov/pubmed/34614124
http://dx.doi.org/10.1590/1678-7757-2021-0296
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