Induction of osteoblastic differentiation of neural crest-derived stem cells from hair follicles.

The neural crest (NC) arises near the neural tube during embryo development. NC cells migrate throughout the embryo and have potential to differentiate into multiple cell types, such as peripheral nerves, glial, cardiac smooth muscle, endocrine, and pigment cells, and craniofacial bone. In the prese...

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Main Authors: Eri Urano-Morisawa, Masamichi Takami, Tetsuo Suzawa, Akifumi Matsumoto, Noriko Osumi, Kazuyoshi Baba, Ryutaro Kamijo
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5383073?pdf=render
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spelling doaj-dfa5fe6026984baa8cc8993ace3a5f522020-11-25T02:32:11ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01124e017494010.1371/journal.pone.0174940Induction of osteoblastic differentiation of neural crest-derived stem cells from hair follicles.Eri Urano-MorisawaMasamichi TakamiTetsuo SuzawaAkifumi MatsumotoNoriko OsumiKazuyoshi BabaRyutaro KamijoThe neural crest (NC) arises near the neural tube during embryo development. NC cells migrate throughout the embryo and have potential to differentiate into multiple cell types, such as peripheral nerves, glial, cardiac smooth muscle, endocrine, and pigment cells, and craniofacial bone. In the present study, we induced osteoblast-like cells using whisker follicles obtained from the NC of mice. Hair follicle cells derived from the NC labeled with enhanced green fluorescent protein (EGFP) were collected from protein zero-Cre/floxed-EGFP double transgenic mice and cultured, then treated and cultured in stem cell growth medium. After growth for 14 days, results of flow cytometry analysis showed that 95% of the EGFP-positive (EGFP+) hair follicle cells derived from the NC had proliferated and 76.2% of those expressed mesenchymal stem cells markers, such as platelet-derived growth factor α and stem cell antigen-1, and also showed constitutive expression of Runx2 mRNA. Cells stimulated with bone morphogenetic protein-2 expressed osteocalcin, osterix, and alkaline phosphatase mRNA, resulting in production of mineralized matrices, which were detected by von Kossa and alizarin red staining. Moreover, EGFP+ hair follicle cells consistently expressed macrophage colony-stimulating factor and osteoprotegerin (OPG). Addition of 1α,25-dihydroxyvitamin D3 [1,25(OH)2D3] (10-8 M) to the cultures suppressed OPG expression and induced RANKL production in the cells. Furthermore, multinucleated osteoclasts appeared within 6 days after starting co-cultures of bone marrow cells with EGFP+ cells in the presence of 1,25(OH)2D3 and PGE2. These results suggest that NC-derived hair follicle cells possess a capacity for osteoblastic differentiation and may be useful for developing new bone regenerative medicine therapies.http://europepmc.org/articles/PMC5383073?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Eri Urano-Morisawa
Masamichi Takami
Tetsuo Suzawa
Akifumi Matsumoto
Noriko Osumi
Kazuyoshi Baba
Ryutaro Kamijo
spellingShingle Eri Urano-Morisawa
Masamichi Takami
Tetsuo Suzawa
Akifumi Matsumoto
Noriko Osumi
Kazuyoshi Baba
Ryutaro Kamijo
Induction of osteoblastic differentiation of neural crest-derived stem cells from hair follicles.
PLoS ONE
author_facet Eri Urano-Morisawa
Masamichi Takami
Tetsuo Suzawa
Akifumi Matsumoto
Noriko Osumi
Kazuyoshi Baba
Ryutaro Kamijo
author_sort Eri Urano-Morisawa
title Induction of osteoblastic differentiation of neural crest-derived stem cells from hair follicles.
title_short Induction of osteoblastic differentiation of neural crest-derived stem cells from hair follicles.
title_full Induction of osteoblastic differentiation of neural crest-derived stem cells from hair follicles.
title_fullStr Induction of osteoblastic differentiation of neural crest-derived stem cells from hair follicles.
title_full_unstemmed Induction of osteoblastic differentiation of neural crest-derived stem cells from hair follicles.
title_sort induction of osteoblastic differentiation of neural crest-derived stem cells from hair follicles.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description The neural crest (NC) arises near the neural tube during embryo development. NC cells migrate throughout the embryo and have potential to differentiate into multiple cell types, such as peripheral nerves, glial, cardiac smooth muscle, endocrine, and pigment cells, and craniofacial bone. In the present study, we induced osteoblast-like cells using whisker follicles obtained from the NC of mice. Hair follicle cells derived from the NC labeled with enhanced green fluorescent protein (EGFP) were collected from protein zero-Cre/floxed-EGFP double transgenic mice and cultured, then treated and cultured in stem cell growth medium. After growth for 14 days, results of flow cytometry analysis showed that 95% of the EGFP-positive (EGFP+) hair follicle cells derived from the NC had proliferated and 76.2% of those expressed mesenchymal stem cells markers, such as platelet-derived growth factor α and stem cell antigen-1, and also showed constitutive expression of Runx2 mRNA. Cells stimulated with bone morphogenetic protein-2 expressed osteocalcin, osterix, and alkaline phosphatase mRNA, resulting in production of mineralized matrices, which were detected by von Kossa and alizarin red staining. Moreover, EGFP+ hair follicle cells consistently expressed macrophage colony-stimulating factor and osteoprotegerin (OPG). Addition of 1α,25-dihydroxyvitamin D3 [1,25(OH)2D3] (10-8 M) to the cultures suppressed OPG expression and induced RANKL production in the cells. Furthermore, multinucleated osteoclasts appeared within 6 days after starting co-cultures of bone marrow cells with EGFP+ cells in the presence of 1,25(OH)2D3 and PGE2. These results suggest that NC-derived hair follicle cells possess a capacity for osteoblastic differentiation and may be useful for developing new bone regenerative medicine therapies.
url http://europepmc.org/articles/PMC5383073?pdf=render
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