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Chordoma‐derived cell line U‐CH1‐N recapitulates the biological properties of notochordal nucleus pulposus cells

Intervertebral disc degeneration proceeds with age and is one of the major causes of lumbar pain and degenerative lumbar spine diseases. However, studies in the field of intervertebral disc biology have been hampered by the lack of reliable cell lines that can be used for in vitro assays. In this st...

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Autores principales: Fujita, Nobuyuki, Suzuki, Satoshi, Watanabe, Kota, Ishii, Ken, Watanabe, Ryuichi, Shimoda, Masayuki, Takubo, Keiyo, Tsuji, Takashi, Toyama, Yoshiaki, Miyamoto, Takeshi, Horiuchi, Keisuke, Nakamura, Masaya, Matsumoto, Morio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5108487/
https://www.ncbi.nlm.nih.gov/pubmed/27248133
http://dx.doi.org/10.1002/jor.23320
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author Fujita, Nobuyuki
Suzuki, Satoshi
Watanabe, Kota
Ishii, Ken
Watanabe, Ryuichi
Shimoda, Masayuki
Takubo, Keiyo
Tsuji, Takashi
Toyama, Yoshiaki
Miyamoto, Takeshi
Horiuchi, Keisuke
Nakamura, Masaya
Matsumoto, Morio
author_facet Fujita, Nobuyuki
Suzuki, Satoshi
Watanabe, Kota
Ishii, Ken
Watanabe, Ryuichi
Shimoda, Masayuki
Takubo, Keiyo
Tsuji, Takashi
Toyama, Yoshiaki
Miyamoto, Takeshi
Horiuchi, Keisuke
Nakamura, Masaya
Matsumoto, Morio
author_sort Fujita, Nobuyuki
collection PubMed
description Intervertebral disc degeneration proceeds with age and is one of the major causes of lumbar pain and degenerative lumbar spine diseases. However, studies in the field of intervertebral disc biology have been hampered by the lack of reliable cell lines that can be used for in vitro assays. In this study, we show that a chordoma‐derived cell line U‐CH1‐N cells highly express the nucleus pulposus (NP) marker genes, including T (encodes T brachyury transcription factor), KRT19, and CD24. These observations were further confirmed by immunocytochemistry and flow cytometry. Reporter analyses showed that transcriptional activity of T was enhanced in U‐CH1‐N cells. Chondrogenic capacity of U‐CH1‐N cells was verified by evaluating the expression of extracellular matrix (ECM) genes and Alcian blue staining. Of note, we found that proliferation and synthesis of chondrogenic ECM proteins were largely dependent on T in U‐CH1‐N cells. In accordance, knockdown of the T transcripts suppressed the expression of PCNA, a gene essential for DNA replication, and SOX5 and SOX6, the master regulators of chondrogenesis. On the other hand, the CD24‐silenced cells showed no reduction in the mRNA expression level of the chondrogenic ECM genes. These results suggest that U‐CH1‐N shares important biological properties with notochordal NP cells and that T plays crucial roles in maintaining the notochordal NP cell‐like phenotype in this cell line. Taken together, our data indicate that U‐CH1‐N may serve as a useful tool in studying the biology of intervertebral disc. © 2016 The Authors. Journal of Orthopaedic Research Published by Wiley Periodicals, Inc. on behalf of Orthopaedic Research Society. J Orthop Res 34:1341–1350, 2016.
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spelling pubmed-51084872016-11-16 Chordoma‐derived cell line U‐CH1‐N recapitulates the biological properties of notochordal nucleus pulposus cells Fujita, Nobuyuki Suzuki, Satoshi Watanabe, Kota Ishii, Ken Watanabe, Ryuichi Shimoda, Masayuki Takubo, Keiyo Tsuji, Takashi Toyama, Yoshiaki Miyamoto, Takeshi Horiuchi, Keisuke Nakamura, Masaya Matsumoto, Morio J Orthop Res Research Articles Intervertebral disc degeneration proceeds with age and is one of the major causes of lumbar pain and degenerative lumbar spine diseases. However, studies in the field of intervertebral disc biology have been hampered by the lack of reliable cell lines that can be used for in vitro assays. In this study, we show that a chordoma‐derived cell line U‐CH1‐N cells highly express the nucleus pulposus (NP) marker genes, including T (encodes T brachyury transcription factor), KRT19, and CD24. These observations were further confirmed by immunocytochemistry and flow cytometry. Reporter analyses showed that transcriptional activity of T was enhanced in U‐CH1‐N cells. Chondrogenic capacity of U‐CH1‐N cells was verified by evaluating the expression of extracellular matrix (ECM) genes and Alcian blue staining. Of note, we found that proliferation and synthesis of chondrogenic ECM proteins were largely dependent on T in U‐CH1‐N cells. In accordance, knockdown of the T transcripts suppressed the expression of PCNA, a gene essential for DNA replication, and SOX5 and SOX6, the master regulators of chondrogenesis. On the other hand, the CD24‐silenced cells showed no reduction in the mRNA expression level of the chondrogenic ECM genes. These results suggest that U‐CH1‐N shares important biological properties with notochordal NP cells and that T plays crucial roles in maintaining the notochordal NP cell‐like phenotype in this cell line. Taken together, our data indicate that U‐CH1‐N may serve as a useful tool in studying the biology of intervertebral disc. © 2016 The Authors. Journal of Orthopaedic Research Published by Wiley Periodicals, Inc. on behalf of Orthopaedic Research Society. J Orthop Res 34:1341–1350, 2016. John Wiley and Sons Inc. 2016-08-02 2016-08 /pmc/articles/PMC5108487/ /pubmed/27248133 http://dx.doi.org/10.1002/jor.23320 Text en © 2016 The Authors. Journal of Orthopaedic Research Published by Wiley Periodicals, Inc. on behalf of Orthopaedic Research Society. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial‐NoDerivs (http://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Fujita, Nobuyuki
Suzuki, Satoshi
Watanabe, Kota
Ishii, Ken
Watanabe, Ryuichi
Shimoda, Masayuki
Takubo, Keiyo
Tsuji, Takashi
Toyama, Yoshiaki
Miyamoto, Takeshi
Horiuchi, Keisuke
Nakamura, Masaya
Matsumoto, Morio
Chordoma‐derived cell line U‐CH1‐N recapitulates the biological properties of notochordal nucleus pulposus cells
title Chordoma‐derived cell line U‐CH1‐N recapitulates the biological properties of notochordal nucleus pulposus cells
title_full Chordoma‐derived cell line U‐CH1‐N recapitulates the biological properties of notochordal nucleus pulposus cells
title_fullStr Chordoma‐derived cell line U‐CH1‐N recapitulates the biological properties of notochordal nucleus pulposus cells
title_full_unstemmed Chordoma‐derived cell line U‐CH1‐N recapitulates the biological properties of notochordal nucleus pulposus cells
title_short Chordoma‐derived cell line U‐CH1‐N recapitulates the biological properties of notochordal nucleus pulposus cells
title_sort chordoma‐derived cell line u‐ch1‐n recapitulates the biological properties of notochordal nucleus pulposus cells
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5108487/
https://www.ncbi.nlm.nih.gov/pubmed/27248133
http://dx.doi.org/10.1002/jor.23320
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