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Stromal Cell-Derived Factor 1 Regulates the Actin Organization of Chondrocytes and Chondrocyte Hypertrophy

Stromal cell-derived factor 1 (SDF-1/CXCL12/PBSF) plays important roles in the biological and physiological functions of haematopoietic and mesenchymal stem cells. This chemokine regulates the formation of multiple organ systems during embryogenesis. However, its roles in skeletal development remain...

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Autores principales: Murata, Koichi, Kitaori, Toshiyuki, Oishi, Shinya, Watanabe, Naoki, Yoshitomi, Hiroyuki, Tanida, Shimei, Ishikawa, Masahiro, Kasahara, Takashi, Shibuya, Hideyuki, Fujii, Nobutaka, Nagasawa, Takashi, Nakamura, Takashi, Ito, Hiromu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3356379/
https://www.ncbi.nlm.nih.gov/pubmed/22623989
http://dx.doi.org/10.1371/journal.pone.0037163
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author Murata, Koichi
Kitaori, Toshiyuki
Oishi, Shinya
Watanabe, Naoki
Yoshitomi, Hiroyuki
Tanida, Shimei
Ishikawa, Masahiro
Kasahara, Takashi
Shibuya, Hideyuki
Fujii, Nobutaka
Nagasawa, Takashi
Nakamura, Takashi
Ito, Hiromu
author_facet Murata, Koichi
Kitaori, Toshiyuki
Oishi, Shinya
Watanabe, Naoki
Yoshitomi, Hiroyuki
Tanida, Shimei
Ishikawa, Masahiro
Kasahara, Takashi
Shibuya, Hideyuki
Fujii, Nobutaka
Nagasawa, Takashi
Nakamura, Takashi
Ito, Hiromu
author_sort Murata, Koichi
collection PubMed
description Stromal cell-derived factor 1 (SDF-1/CXCL12/PBSF) plays important roles in the biological and physiological functions of haematopoietic and mesenchymal stem cells. This chemokine regulates the formation of multiple organ systems during embryogenesis. However, its roles in skeletal development remain unclear. Here we investigated the roles of SDF-1 in chondrocyte differentiation. We demonstrated that SDF-1 protein was expressed at pre-hypertrophic and hypertrophic chondrocytes in the newly formed endochondral callus of rib fracture as well as in the growth plate of normal mouse tibia by immunohistochemical analysis. Using SDF-1(−/−) mouse embryo, we histologically showed that the total length of the whole humeri of SDF-1(−/−) mice was significantly shorter than that of wild-type mice, which was contributed mainly by shorter hypertrophic and calcified zones in SDF-1(−/−) mice. Actin cytoskeleton of hypertrophic chondrocytes in SDF-1(−/−) mouse humeri showed less F-actin and rounder shape than that of wild-type mice. Primary chondrocytes from SDF-1(−/−) mice showed the enhanced formation of philopodia and loss of F-actin. The administration of SDF-1 to primary chondrocytes of wild-type mice and SDF-1(−/−) mice promoted the formation of actin stress fibers. Organ culture of embryonic metatarsals from SDF-1(−/−) mice showed the growth delay, which was recovered by an exogenous administration of SDF-1. mRNA expression of type X collagen in metatarsals and in primary chondrocytes of SDF-1(−/−) mouse embryo was down-regulated while the administration of SDF-1 to metatarsals recovered. These data suggests that SDF-1 regulates the actin organization and stimulates bone growth by mediating chondrocyte hypertrophy.
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spelling pubmed-33563792012-05-23 Stromal Cell-Derived Factor 1 Regulates the Actin Organization of Chondrocytes and Chondrocyte Hypertrophy Murata, Koichi Kitaori, Toshiyuki Oishi, Shinya Watanabe, Naoki Yoshitomi, Hiroyuki Tanida, Shimei Ishikawa, Masahiro Kasahara, Takashi Shibuya, Hideyuki Fujii, Nobutaka Nagasawa, Takashi Nakamura, Takashi Ito, Hiromu PLoS One Research Article Stromal cell-derived factor 1 (SDF-1/CXCL12/PBSF) plays important roles in the biological and physiological functions of haematopoietic and mesenchymal stem cells. This chemokine regulates the formation of multiple organ systems during embryogenesis. However, its roles in skeletal development remain unclear. Here we investigated the roles of SDF-1 in chondrocyte differentiation. We demonstrated that SDF-1 protein was expressed at pre-hypertrophic and hypertrophic chondrocytes in the newly formed endochondral callus of rib fracture as well as in the growth plate of normal mouse tibia by immunohistochemical analysis. Using SDF-1(−/−) mouse embryo, we histologically showed that the total length of the whole humeri of SDF-1(−/−) mice was significantly shorter than that of wild-type mice, which was contributed mainly by shorter hypertrophic and calcified zones in SDF-1(−/−) mice. Actin cytoskeleton of hypertrophic chondrocytes in SDF-1(−/−) mouse humeri showed less F-actin and rounder shape than that of wild-type mice. Primary chondrocytes from SDF-1(−/−) mice showed the enhanced formation of philopodia and loss of F-actin. The administration of SDF-1 to primary chondrocytes of wild-type mice and SDF-1(−/−) mice promoted the formation of actin stress fibers. Organ culture of embryonic metatarsals from SDF-1(−/−) mice showed the growth delay, which was recovered by an exogenous administration of SDF-1. mRNA expression of type X collagen in metatarsals and in primary chondrocytes of SDF-1(−/−) mouse embryo was down-regulated while the administration of SDF-1 to metatarsals recovered. These data suggests that SDF-1 regulates the actin organization and stimulates bone growth by mediating chondrocyte hypertrophy. Public Library of Science 2012-05-18 /pmc/articles/PMC3356379/ /pubmed/22623989 http://dx.doi.org/10.1371/journal.pone.0037163 Text en Murata et al. http://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 author and source are properly credited.
spellingShingle Research Article
Murata, Koichi
Kitaori, Toshiyuki
Oishi, Shinya
Watanabe, Naoki
Yoshitomi, Hiroyuki
Tanida, Shimei
Ishikawa, Masahiro
Kasahara, Takashi
Shibuya, Hideyuki
Fujii, Nobutaka
Nagasawa, Takashi
Nakamura, Takashi
Ito, Hiromu
Stromal Cell-Derived Factor 1 Regulates the Actin Organization of Chondrocytes and Chondrocyte Hypertrophy
title Stromal Cell-Derived Factor 1 Regulates the Actin Organization of Chondrocytes and Chondrocyte Hypertrophy
title_full Stromal Cell-Derived Factor 1 Regulates the Actin Organization of Chondrocytes and Chondrocyte Hypertrophy
title_fullStr Stromal Cell-Derived Factor 1 Regulates the Actin Organization of Chondrocytes and Chondrocyte Hypertrophy
title_full_unstemmed Stromal Cell-Derived Factor 1 Regulates the Actin Organization of Chondrocytes and Chondrocyte Hypertrophy
title_short Stromal Cell-Derived Factor 1 Regulates the Actin Organization of Chondrocytes and Chondrocyte Hypertrophy
title_sort stromal cell-derived factor 1 regulates the actin organization of chondrocytes and chondrocyte hypertrophy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3356379/
https://www.ncbi.nlm.nih.gov/pubmed/22623989
http://dx.doi.org/10.1371/journal.pone.0037163
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