Cargando…

Diabetic Impairment of C-Kit(+) Bone Marrow Stem Cells Involves the Disorders of Inflammatory Factors, Cell Adhesion and Extracellular Matrix Molecules

Bone marrow stem cells from diabetes mellitus patients exhibit functional impairment, but the relative molecular mechanisms responsible for this impairment are poorly understood. We investigated the mechanisms responsible for diabetes-related functional impairment of bone marrow stem cells by extens...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Tao-Sheng, Ikeda, Satoshi, Kubo, Masayuki, Ohshima, Mako, Kurazumi, Hiroshi, Takemoto, Yoshihiro, Ueda, Kazuhiro, Hamano, Kimikazu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3184966/
https://www.ncbi.nlm.nih.gov/pubmed/21984919
http://dx.doi.org/10.1371/journal.pone.0025543
_version_ 1782213167734063104
author Li, Tao-Sheng
Ikeda, Satoshi
Kubo, Masayuki
Ohshima, Mako
Kurazumi, Hiroshi
Takemoto, Yoshihiro
Ueda, Kazuhiro
Hamano, Kimikazu
author_facet Li, Tao-Sheng
Ikeda, Satoshi
Kubo, Masayuki
Ohshima, Mako
Kurazumi, Hiroshi
Takemoto, Yoshihiro
Ueda, Kazuhiro
Hamano, Kimikazu
author_sort Li, Tao-Sheng
collection PubMed
description Bone marrow stem cells from diabetes mellitus patients exhibit functional impairment, but the relative molecular mechanisms responsible for this impairment are poorly understood. We investigated the mechanisms responsible for diabetes-related functional impairment of bone marrow stem cells by extensively screening the expression levels of inflammatory factors, cell cycle regulating molecules, extracellular matrix molecules and adhesion molecules. Bone marrow cells were collected from type 2 diabetic (db/db) and healthy control (db/m+) mice, and c-kit(+) stem cells were purified (purity>85%) for experiments. Compared with the healthy control mice, diabetic mice had significantly fewer c-kit(+) stem cells, and these cells had a lower potency of endothelial differentiation; however, the production of the angiogenic growth factor VEGF did not differ between groups. A pathway-focused array showed that the c-kit(+) stem cells from diabetic mice had up-regulated expression levels of many inflammatory factors, including Tlr4, Cxcl9, Il9, Tgfb1, Il4, and Tnfsf5, but no obvious change in the expression levels of cell cycle molecules. Interestingly, diabetes-related alterations of the extracellular matrix and adhesion molecules were varied; Pecam, Mmp10, Lamc1, Itgb7, Mmp9, and Timp4 were up-regulated, but Col11a1, Fn1, Admts2, and Itgav were down-regulated. Some of these changes were also confirmed at the protein level by flow cytometry analysis. In conclusion, c-kit(+) bone marrow stem cells from diabetic mice exhibited an extensive enhancement of inflammatory factors and disorders of the extracellular matrix and adhesion molecules. Further intervention studies are required to determine the precise role of each molecule in the diabetes-related functional impairment of c-kit(+) bone marrow stem cells.
format Online
Article
Text
id pubmed-3184966
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31849662011-10-07 Diabetic Impairment of C-Kit(+) Bone Marrow Stem Cells Involves the Disorders of Inflammatory Factors, Cell Adhesion and Extracellular Matrix Molecules Li, Tao-Sheng Ikeda, Satoshi Kubo, Masayuki Ohshima, Mako Kurazumi, Hiroshi Takemoto, Yoshihiro Ueda, Kazuhiro Hamano, Kimikazu PLoS One Research Article Bone marrow stem cells from diabetes mellitus patients exhibit functional impairment, but the relative molecular mechanisms responsible for this impairment are poorly understood. We investigated the mechanisms responsible for diabetes-related functional impairment of bone marrow stem cells by extensively screening the expression levels of inflammatory factors, cell cycle regulating molecules, extracellular matrix molecules and adhesion molecules. Bone marrow cells were collected from type 2 diabetic (db/db) and healthy control (db/m+) mice, and c-kit(+) stem cells were purified (purity>85%) for experiments. Compared with the healthy control mice, diabetic mice had significantly fewer c-kit(+) stem cells, and these cells had a lower potency of endothelial differentiation; however, the production of the angiogenic growth factor VEGF did not differ between groups. A pathway-focused array showed that the c-kit(+) stem cells from diabetic mice had up-regulated expression levels of many inflammatory factors, including Tlr4, Cxcl9, Il9, Tgfb1, Il4, and Tnfsf5, but no obvious change in the expression levels of cell cycle molecules. Interestingly, diabetes-related alterations of the extracellular matrix and adhesion molecules were varied; Pecam, Mmp10, Lamc1, Itgb7, Mmp9, and Timp4 were up-regulated, but Col11a1, Fn1, Admts2, and Itgav were down-regulated. Some of these changes were also confirmed at the protein level by flow cytometry analysis. In conclusion, c-kit(+) bone marrow stem cells from diabetic mice exhibited an extensive enhancement of inflammatory factors and disorders of the extracellular matrix and adhesion molecules. Further intervention studies are required to determine the precise role of each molecule in the diabetes-related functional impairment of c-kit(+) bone marrow stem cells. Public Library of Science 2011-10-03 /pmc/articles/PMC3184966/ /pubmed/21984919 http://dx.doi.org/10.1371/journal.pone.0025543 Text en Li 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
Li, Tao-Sheng
Ikeda, Satoshi
Kubo, Masayuki
Ohshima, Mako
Kurazumi, Hiroshi
Takemoto, Yoshihiro
Ueda, Kazuhiro
Hamano, Kimikazu
Diabetic Impairment of C-Kit(+) Bone Marrow Stem Cells Involves the Disorders of Inflammatory Factors, Cell Adhesion and Extracellular Matrix Molecules
title Diabetic Impairment of C-Kit(+) Bone Marrow Stem Cells Involves the Disorders of Inflammatory Factors, Cell Adhesion and Extracellular Matrix Molecules
title_full Diabetic Impairment of C-Kit(+) Bone Marrow Stem Cells Involves the Disorders of Inflammatory Factors, Cell Adhesion and Extracellular Matrix Molecules
title_fullStr Diabetic Impairment of C-Kit(+) Bone Marrow Stem Cells Involves the Disorders of Inflammatory Factors, Cell Adhesion and Extracellular Matrix Molecules
title_full_unstemmed Diabetic Impairment of C-Kit(+) Bone Marrow Stem Cells Involves the Disorders of Inflammatory Factors, Cell Adhesion and Extracellular Matrix Molecules
title_short Diabetic Impairment of C-Kit(+) Bone Marrow Stem Cells Involves the Disorders of Inflammatory Factors, Cell Adhesion and Extracellular Matrix Molecules
title_sort diabetic impairment of c-kit(+) bone marrow stem cells involves the disorders of inflammatory factors, cell adhesion and extracellular matrix molecules
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3184966/
https://www.ncbi.nlm.nih.gov/pubmed/21984919
http://dx.doi.org/10.1371/journal.pone.0025543
work_keys_str_mv AT litaosheng diabeticimpairmentofckitbonemarrowstemcellsinvolvesthedisordersofinflammatoryfactorscelladhesionandextracellularmatrixmolecules
AT ikedasatoshi diabeticimpairmentofckitbonemarrowstemcellsinvolvesthedisordersofinflammatoryfactorscelladhesionandextracellularmatrixmolecules
AT kubomasayuki diabeticimpairmentofckitbonemarrowstemcellsinvolvesthedisordersofinflammatoryfactorscelladhesionandextracellularmatrixmolecules
AT ohshimamako diabeticimpairmentofckitbonemarrowstemcellsinvolvesthedisordersofinflammatoryfactorscelladhesionandextracellularmatrixmolecules
AT kurazumihiroshi diabeticimpairmentofckitbonemarrowstemcellsinvolvesthedisordersofinflammatoryfactorscelladhesionandextracellularmatrixmolecules
AT takemotoyoshihiro diabeticimpairmentofckitbonemarrowstemcellsinvolvesthedisordersofinflammatoryfactorscelladhesionandextracellularmatrixmolecules
AT uedakazuhiro diabeticimpairmentofckitbonemarrowstemcellsinvolvesthedisordersofinflammatoryfactorscelladhesionandextracellularmatrixmolecules
AT hamanokimikazu diabeticimpairmentofckitbonemarrowstemcellsinvolvesthedisordersofinflammatoryfactorscelladhesionandextracellularmatrixmolecules