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PLA-Based Mineral-Doped Scaffolds Seeded with Human Periapical Cyst-Derived MSCs: A Promising Tool for Regenerative Healing in Dentistry

Human periapical cyst mesenchymal stem cells (hPCy-MSCs) are a newly discovered cell population innovatively collected from inflammatory periapical cysts. The use of this biological waste guarantees a source of stem cells without any impact on the surrounding healthy tissues, presenting a valuable p...

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Autores principales: Tatullo, Marco, Spagnuolo, Gianrico, Codispoti, Bruna, Zamparini, Fausto, Zhang, Anqi, Esposti, Micaela Degli, Aparicio, Conrado, Rengo, Carlo, Nuzzolese, Manuel, Manzoli, Lucia, Fava, Fabio, Prati, Carlo, Fabbri, Paola, Gandolfi, Maria Giovanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6416549/
https://www.ncbi.nlm.nih.gov/pubmed/30781537
http://dx.doi.org/10.3390/ma12040597
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author Tatullo, Marco
Spagnuolo, Gianrico
Codispoti, Bruna
Zamparini, Fausto
Zhang, Anqi
Esposti, Micaela Degli
Aparicio, Conrado
Rengo, Carlo
Nuzzolese, Manuel
Manzoli, Lucia
Fava, Fabio
Prati, Carlo
Fabbri, Paola
Gandolfi, Maria Giovanna
author_facet Tatullo, Marco
Spagnuolo, Gianrico
Codispoti, Bruna
Zamparini, Fausto
Zhang, Anqi
Esposti, Micaela Degli
Aparicio, Conrado
Rengo, Carlo
Nuzzolese, Manuel
Manzoli, Lucia
Fava, Fabio
Prati, Carlo
Fabbri, Paola
Gandolfi, Maria Giovanna
author_sort Tatullo, Marco
collection PubMed
description Human periapical cyst mesenchymal stem cells (hPCy-MSCs) are a newly discovered cell population innovatively collected from inflammatory periapical cysts. The use of this biological waste guarantees a source of stem cells without any impact on the surrounding healthy tissues, presenting a valuable potential in tissue engineering and regenerative medicine applications. In the present study, hPCy-MSCs were collected, isolated, and seeded on three experimental mineral-doped porous scaffolds produced by the thermally-induced phase-separation (TIPS) technique. Mineral-doped scaffolds, composed of polylactic acid (PLA), dicalcium phosphate dihydrate (DCPD), and/or hydraulic calcium silicate (CaSi), were produced by TIPS (PLA-10CaSi, PLA-5CaSi-5DCPD, PLA-10CaSi-10DCPD). Micro-CT analysis evaluated scaffolds micromorphology. Collected hPCy-MSCs, characterized by cytofluorimetry, were seeded on the scaffolds and tested for cell proliferation, cells viability, and gene expression for osteogenic and odontogenic differentiation (DMP-1, OSC, RUNX-2, HPRT). Micro-CT revealed an interconnected highly porous structure for all the scaffolds, similar total porosity with 99% open pores. Pore wall thickness increased with the percentage of CaSi and DCPD. Cells seeded on mineral-doped scaffolds showed a superior proliferation compared to pure PLA scaffolds (control), particularly on PLA-10CaSi-10DCPD at day 12. A higher number of non-viable (red stained) cells was observable on PLA scaffolds at days 14 and 21. DMP-1 expression increased in hPCy-MSCs cultured on all mineral-doped scaffolds, in particular on PLA-5CaSi-5DCPD and PLA-10CaSi-10DCPD. In conclusion, the innovative combination of experimental scaffolds colonized with autologous stem cells from periapical cyst represent a promising strategy for regenerative healing of periapical and alveolar bone.
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spelling pubmed-64165492019-03-29 PLA-Based Mineral-Doped Scaffolds Seeded with Human Periapical Cyst-Derived MSCs: A Promising Tool for Regenerative Healing in Dentistry Tatullo, Marco Spagnuolo, Gianrico Codispoti, Bruna Zamparini, Fausto Zhang, Anqi Esposti, Micaela Degli Aparicio, Conrado Rengo, Carlo Nuzzolese, Manuel Manzoli, Lucia Fava, Fabio Prati, Carlo Fabbri, Paola Gandolfi, Maria Giovanna Materials (Basel) Article Human periapical cyst mesenchymal stem cells (hPCy-MSCs) are a newly discovered cell population innovatively collected from inflammatory periapical cysts. The use of this biological waste guarantees a source of stem cells without any impact on the surrounding healthy tissues, presenting a valuable potential in tissue engineering and regenerative medicine applications. In the present study, hPCy-MSCs were collected, isolated, and seeded on three experimental mineral-doped porous scaffolds produced by the thermally-induced phase-separation (TIPS) technique. Mineral-doped scaffolds, composed of polylactic acid (PLA), dicalcium phosphate dihydrate (DCPD), and/or hydraulic calcium silicate (CaSi), were produced by TIPS (PLA-10CaSi, PLA-5CaSi-5DCPD, PLA-10CaSi-10DCPD). Micro-CT analysis evaluated scaffolds micromorphology. Collected hPCy-MSCs, characterized by cytofluorimetry, were seeded on the scaffolds and tested for cell proliferation, cells viability, and gene expression for osteogenic and odontogenic differentiation (DMP-1, OSC, RUNX-2, HPRT). Micro-CT revealed an interconnected highly porous structure for all the scaffolds, similar total porosity with 99% open pores. Pore wall thickness increased with the percentage of CaSi and DCPD. Cells seeded on mineral-doped scaffolds showed a superior proliferation compared to pure PLA scaffolds (control), particularly on PLA-10CaSi-10DCPD at day 12. A higher number of non-viable (red stained) cells was observable on PLA scaffolds at days 14 and 21. DMP-1 expression increased in hPCy-MSCs cultured on all mineral-doped scaffolds, in particular on PLA-5CaSi-5DCPD and PLA-10CaSi-10DCPD. In conclusion, the innovative combination of experimental scaffolds colonized with autologous stem cells from periapical cyst represent a promising strategy for regenerative healing of periapical and alveolar bone. MDPI 2019-02-16 /pmc/articles/PMC6416549/ /pubmed/30781537 http://dx.doi.org/10.3390/ma12040597 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tatullo, Marco
Spagnuolo, Gianrico
Codispoti, Bruna
Zamparini, Fausto
Zhang, Anqi
Esposti, Micaela Degli
Aparicio, Conrado
Rengo, Carlo
Nuzzolese, Manuel
Manzoli, Lucia
Fava, Fabio
Prati, Carlo
Fabbri, Paola
Gandolfi, Maria Giovanna
PLA-Based Mineral-Doped Scaffolds Seeded with Human Periapical Cyst-Derived MSCs: A Promising Tool for Regenerative Healing in Dentistry
title PLA-Based Mineral-Doped Scaffolds Seeded with Human Periapical Cyst-Derived MSCs: A Promising Tool for Regenerative Healing in Dentistry
title_full PLA-Based Mineral-Doped Scaffolds Seeded with Human Periapical Cyst-Derived MSCs: A Promising Tool for Regenerative Healing in Dentistry
title_fullStr PLA-Based Mineral-Doped Scaffolds Seeded with Human Periapical Cyst-Derived MSCs: A Promising Tool for Regenerative Healing in Dentistry
title_full_unstemmed PLA-Based Mineral-Doped Scaffolds Seeded with Human Periapical Cyst-Derived MSCs: A Promising Tool for Regenerative Healing in Dentistry
title_short PLA-Based Mineral-Doped Scaffolds Seeded with Human Periapical Cyst-Derived MSCs: A Promising Tool for Regenerative Healing in Dentistry
title_sort pla-based mineral-doped scaffolds seeded with human periapical cyst-derived mscs: a promising tool for regenerative healing in dentistry
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6416549/
https://www.ncbi.nlm.nih.gov/pubmed/30781537
http://dx.doi.org/10.3390/ma12040597
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