Cargando…

Thrombopoietic-mesenchymal interaction that may facilitate both endochondral ossification and platelet maturation via CCN2

CCN2 plays a central role in the development and growth of mesenchymal tissue and promotes the regeneration of bone and cartilage in vivo. Of note, abundant CCN2 is contained in platelets, which is thought to play an important role in the tissue regeneration process. In this study, we initially purs...

Descripción completa

Detalles Bibliográficos
Autores principales: Sumiyoshi, Kumi, Kubota, Satoshi, Furuta, Rika A., Yasui, Kazuta, Aoyama, Eriko, Kawaki, Harumi, Kawata, Kazumi, Ohgawara, Toshihiro, Yamashiro, Takashi, Takigawa, Masaharu
Formato: Texto
Lenguaje:English
Publicado: Springer Netherlands 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2821475/
https://www.ncbi.nlm.nih.gov/pubmed/19798594
http://dx.doi.org/10.1007/s12079-009-0067-1
_version_ 1782177443006644224
author Sumiyoshi, Kumi
Kubota, Satoshi
Furuta, Rika A.
Yasui, Kazuta
Aoyama, Eriko
Kawaki, Harumi
Kawata, Kazumi
Ohgawara, Toshihiro
Yamashiro, Takashi
Takigawa, Masaharu
author_facet Sumiyoshi, Kumi
Kubota, Satoshi
Furuta, Rika A.
Yasui, Kazuta
Aoyama, Eriko
Kawaki, Harumi
Kawata, Kazumi
Ohgawara, Toshihiro
Yamashiro, Takashi
Takigawa, Masaharu
author_sort Sumiyoshi, Kumi
collection PubMed
description CCN2 plays a central role in the development and growth of mesenchymal tissue and promotes the regeneration of bone and cartilage in vivo. Of note, abundant CCN2 is contained in platelets, which is thought to play an important role in the tissue regeneration process. In this study, we initially pursued the possible origin of the CCN2 in platelets. First, we examined if the CCN2 in platelets was produced by megakaryocyte progenitors during differentiation. Unexpectedly, neither megakaryocytic CMK cells nor megakaryocytes that had differentiated from human haemopoietic stem cells in culture showed any detectable CCN2 gene expression or protein production. Together with the fact that no appreciable CCN2 was detected in megakaryocytes in vivo, these results suggest that megakaryocytes themselves do not produce CCN2. Next, we suspected that mesenchymal cells situated around megakaryocytes in the bone marrow were stimulated by the latter to produce CCN2, which was then taken up by platelets. To evaluate this hypothesis, we cultured human chondrocytic HCS-2/8 cells with medium conditioned by differentiating megakaryocyte cultures, and then monitored the production of CCN2 by the cells. As suspected, CCN2 production by HCS-2/8 was significantly enhanced by the conditioned medium. We further confirmed that human platelets were able to absorb/uptake exogenous CCN2 in vitro. These findings indicate that megakaryocytes secrete some unknown soluble factor(s) during differentiation, which factor stimulates the mesenchymal cells to produce CCN2 for uptake by the platelets. We also consider that, during bone growth, such thrombopoietic-mesenchymal interaction may contribute to the hypertrophic chondrocyte-specific accumulation of CCN2 that conducts endochondral ossification.
format Text
id pubmed-2821475
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher Springer Netherlands
record_format MEDLINE/PubMed
spelling pubmed-28214752010-02-19 Thrombopoietic-mesenchymal interaction that may facilitate both endochondral ossification and platelet maturation via CCN2 Sumiyoshi, Kumi Kubota, Satoshi Furuta, Rika A. Yasui, Kazuta Aoyama, Eriko Kawaki, Harumi Kawata, Kazumi Ohgawara, Toshihiro Yamashiro, Takashi Takigawa, Masaharu J Cell Commun Signal Research Article CCN2 plays a central role in the development and growth of mesenchymal tissue and promotes the regeneration of bone and cartilage in vivo. Of note, abundant CCN2 is contained in platelets, which is thought to play an important role in the tissue regeneration process. In this study, we initially pursued the possible origin of the CCN2 in platelets. First, we examined if the CCN2 in platelets was produced by megakaryocyte progenitors during differentiation. Unexpectedly, neither megakaryocytic CMK cells nor megakaryocytes that had differentiated from human haemopoietic stem cells in culture showed any detectable CCN2 gene expression or protein production. Together with the fact that no appreciable CCN2 was detected in megakaryocytes in vivo, these results suggest that megakaryocytes themselves do not produce CCN2. Next, we suspected that mesenchymal cells situated around megakaryocytes in the bone marrow were stimulated by the latter to produce CCN2, which was then taken up by platelets. To evaluate this hypothesis, we cultured human chondrocytic HCS-2/8 cells with medium conditioned by differentiating megakaryocyte cultures, and then monitored the production of CCN2 by the cells. As suspected, CCN2 production by HCS-2/8 was significantly enhanced by the conditioned medium. We further confirmed that human platelets were able to absorb/uptake exogenous CCN2 in vitro. These findings indicate that megakaryocytes secrete some unknown soluble factor(s) during differentiation, which factor stimulates the mesenchymal cells to produce CCN2 for uptake by the platelets. We also consider that, during bone growth, such thrombopoietic-mesenchymal interaction may contribute to the hypertrophic chondrocyte-specific accumulation of CCN2 that conducts endochondral ossification. Springer Netherlands 2009-10-02 2010-03 /pmc/articles/PMC2821475/ /pubmed/19798594 http://dx.doi.org/10.1007/s12079-009-0067-1 Text en © The Author(s) 2009 https://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution Noncommercial License which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Research Article
Sumiyoshi, Kumi
Kubota, Satoshi
Furuta, Rika A.
Yasui, Kazuta
Aoyama, Eriko
Kawaki, Harumi
Kawata, Kazumi
Ohgawara, Toshihiro
Yamashiro, Takashi
Takigawa, Masaharu
Thrombopoietic-mesenchymal interaction that may facilitate both endochondral ossification and platelet maturation via CCN2
title Thrombopoietic-mesenchymal interaction that may facilitate both endochondral ossification and platelet maturation via CCN2
title_full Thrombopoietic-mesenchymal interaction that may facilitate both endochondral ossification and platelet maturation via CCN2
title_fullStr Thrombopoietic-mesenchymal interaction that may facilitate both endochondral ossification and platelet maturation via CCN2
title_full_unstemmed Thrombopoietic-mesenchymal interaction that may facilitate both endochondral ossification and platelet maturation via CCN2
title_short Thrombopoietic-mesenchymal interaction that may facilitate both endochondral ossification and platelet maturation via CCN2
title_sort thrombopoietic-mesenchymal interaction that may facilitate both endochondral ossification and platelet maturation via ccn2
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2821475/
https://www.ncbi.nlm.nih.gov/pubmed/19798594
http://dx.doi.org/10.1007/s12079-009-0067-1
work_keys_str_mv AT sumiyoshikumi thrombopoieticmesenchymalinteractionthatmayfacilitatebothendochondralossificationandplateletmaturationviaccn2
AT kubotasatoshi thrombopoieticmesenchymalinteractionthatmayfacilitatebothendochondralossificationandplateletmaturationviaccn2
AT furutarikaa thrombopoieticmesenchymalinteractionthatmayfacilitatebothendochondralossificationandplateletmaturationviaccn2
AT yasuikazuta thrombopoieticmesenchymalinteractionthatmayfacilitatebothendochondralossificationandplateletmaturationviaccn2
AT aoyamaeriko thrombopoieticmesenchymalinteractionthatmayfacilitatebothendochondralossificationandplateletmaturationviaccn2
AT kawakiharumi thrombopoieticmesenchymalinteractionthatmayfacilitatebothendochondralossificationandplateletmaturationviaccn2
AT kawatakazumi thrombopoieticmesenchymalinteractionthatmayfacilitatebothendochondralossificationandplateletmaturationviaccn2
AT ohgawaratoshihiro thrombopoieticmesenchymalinteractionthatmayfacilitatebothendochondralossificationandplateletmaturationviaccn2
AT yamashirotakashi thrombopoieticmesenchymalinteractionthatmayfacilitatebothendochondralossificationandplateletmaturationviaccn2
AT takigawamasaharu thrombopoieticmesenchymalinteractionthatmayfacilitatebothendochondralossificationandplateletmaturationviaccn2