Cargando…

A novel model to culture cells from giant cell tumor of bone using three‐dimensional (3D) polycaprolactone scaffold

Two‐dimensional (2D) culture of cells from giant cell tumor of bone (GCTB) is affected by loss of the multinucleated giant cells in subsequent passages. Therefore, there is limited time to study GCTB with all its histological components in 2D culture. Here, we explored the possibility of culturing G...

Descripción completa

Detalles Bibliográficos
Autores principales: Estrada‐Villaseñor, Eréndira, Valdés‐Flores, Margarita, Meneses‐García, Abelardo, Silva‐Bermudez, Phaedra, Pichardo‐Bahena, Raul, Ostoa‐Saloma, Pedro, Mercado‐Celis, Gabriela, Delgado‐Cedillo, Ernesto D., Olivos‐Meza, Anell, Landa‐Solís, Carlos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8456323/
https://www.ncbi.nlm.nih.gov/pubmed/34584518
http://dx.doi.org/10.1002/elsc.202100020
_version_ 1784570850433826816
author Estrada‐Villaseñor, Eréndira
Valdés‐Flores, Margarita
Meneses‐García, Abelardo
Silva‐Bermudez, Phaedra
Pichardo‐Bahena, Raul
Ostoa‐Saloma, Pedro
Mercado‐Celis, Gabriela
Delgado‐Cedillo, Ernesto D.
Olivos‐Meza, Anell
Landa‐Solís, Carlos
author_facet Estrada‐Villaseñor, Eréndira
Valdés‐Flores, Margarita
Meneses‐García, Abelardo
Silva‐Bermudez, Phaedra
Pichardo‐Bahena, Raul
Ostoa‐Saloma, Pedro
Mercado‐Celis, Gabriela
Delgado‐Cedillo, Ernesto D.
Olivos‐Meza, Anell
Landa‐Solís, Carlos
author_sort Estrada‐Villaseñor, Eréndira
collection PubMed
description Two‐dimensional (2D) culture of cells from giant cell tumor of bone (GCTB) is affected by loss of the multinucleated giant cells in subsequent passages. Therefore, there is limited time to study GCTB with all its histological components in 2D culture. Here, we explored the possibility of culturing GCTB cells on a polycaprolactone (PCL)‐printed scaffold. We also evaluated the viability of the cultured cells and their adherence to the PCL scaffold at day 14 days using immunofluorescence analysis with calcein, vinculin, and phalloidin. Using the histological technique with hematoxylin and eosin staining, we observed all the histological components of GCTB in this 3D model. Immunohistochemical assays with cathepsin K, p63, and receptor activator of nuclear factor (NF)‐κB ligand (RANKL) yielded positive results in this construct, which allowed us to confirm that the seeded cells maintained the expression of GCTB markers. Based on these findings, we concluded that the PCL scaffold is an efficient model to culture GCTB cells, and the cell viability and adherence to the scaffold can be preserved for up to 14 days. Moreover, this model can also be used in subsequent studies to assess in vitro cell–cell interactions and antineoplastic efficacy of certain agents to establish a treatment against GCTB.
format Online
Article
Text
id pubmed-8456323
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-84563232021-09-27 A novel model to culture cells from giant cell tumor of bone using three‐dimensional (3D) polycaprolactone scaffold Estrada‐Villaseñor, Eréndira Valdés‐Flores, Margarita Meneses‐García, Abelardo Silva‐Bermudez, Phaedra Pichardo‐Bahena, Raul Ostoa‐Saloma, Pedro Mercado‐Celis, Gabriela Delgado‐Cedillo, Ernesto D. Olivos‐Meza, Anell Landa‐Solís, Carlos Eng Life Sci Short Communication Two‐dimensional (2D) culture of cells from giant cell tumor of bone (GCTB) is affected by loss of the multinucleated giant cells in subsequent passages. Therefore, there is limited time to study GCTB with all its histological components in 2D culture. Here, we explored the possibility of culturing GCTB cells on a polycaprolactone (PCL)‐printed scaffold. We also evaluated the viability of the cultured cells and their adherence to the PCL scaffold at day 14 days using immunofluorescence analysis with calcein, vinculin, and phalloidin. Using the histological technique with hematoxylin and eosin staining, we observed all the histological components of GCTB in this 3D model. Immunohistochemical assays with cathepsin K, p63, and receptor activator of nuclear factor (NF)‐κB ligand (RANKL) yielded positive results in this construct, which allowed us to confirm that the seeded cells maintained the expression of GCTB markers. Based on these findings, we concluded that the PCL scaffold is an efficient model to culture GCTB cells, and the cell viability and adherence to the scaffold can be preserved for up to 14 days. Moreover, this model can also be used in subsequent studies to assess in vitro cell–cell interactions and antineoplastic efficacy of certain agents to establish a treatment against GCTB. John Wiley and Sons Inc. 2021-06-29 /pmc/articles/PMC8456323/ /pubmed/34584518 http://dx.doi.org/10.1002/elsc.202100020 Text en © 2021 The Authors. Engineering in Life Sciences published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Short Communication
Estrada‐Villaseñor, Eréndira
Valdés‐Flores, Margarita
Meneses‐García, Abelardo
Silva‐Bermudez, Phaedra
Pichardo‐Bahena, Raul
Ostoa‐Saloma, Pedro
Mercado‐Celis, Gabriela
Delgado‐Cedillo, Ernesto D.
Olivos‐Meza, Anell
Landa‐Solís, Carlos
A novel model to culture cells from giant cell tumor of bone using three‐dimensional (3D) polycaprolactone scaffold
title A novel model to culture cells from giant cell tumor of bone using three‐dimensional (3D) polycaprolactone scaffold
title_full A novel model to culture cells from giant cell tumor of bone using three‐dimensional (3D) polycaprolactone scaffold
title_fullStr A novel model to culture cells from giant cell tumor of bone using three‐dimensional (3D) polycaprolactone scaffold
title_full_unstemmed A novel model to culture cells from giant cell tumor of bone using three‐dimensional (3D) polycaprolactone scaffold
title_short A novel model to culture cells from giant cell tumor of bone using three‐dimensional (3D) polycaprolactone scaffold
title_sort novel model to culture cells from giant cell tumor of bone using three‐dimensional (3d) polycaprolactone scaffold
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8456323/
https://www.ncbi.nlm.nih.gov/pubmed/34584518
http://dx.doi.org/10.1002/elsc.202100020
work_keys_str_mv AT estradavillasenorerendira anovelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT valdesfloresmargarita anovelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT menesesgarciaabelardo anovelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT silvabermudezphaedra anovelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT pichardobahenaraul anovelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT ostoasalomapedro anovelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT mercadocelisgabriela anovelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT delgadocedilloernestod anovelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT olivosmezaanell anovelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT landasoliscarlos anovelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT estradavillasenorerendira novelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT valdesfloresmargarita novelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT menesesgarciaabelardo novelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT silvabermudezphaedra novelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT pichardobahenaraul novelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT ostoasalomapedro novelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT mercadocelisgabriela novelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT delgadocedilloernestod novelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT olivosmezaanell novelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold
AT landasoliscarlos novelmodeltoculturecellsfromgiantcelltumorofboneusingthreedimensional3dpolycaprolactonescaffold