Cell-Based Fabrication of Organic/Inorganic Composite Gel Material
Biomaterials containing components similar to the native biological tissue would have benefits as an implantable scaffold material. To obtain such biomimetic materials, cells may be great contributors because of their crucial roles in synthetic organics. In addition, the synthesized organics—especia...
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doaj-fbd4b0e5162c4485ba0f72972a7c25ef2020-11-24T22:58:56ZengMDPI AGMaterials1996-19442011-01-014132733810.3390/ma4010327Cell-Based Fabrication of Organic/Inorganic Composite Gel MaterialTakayoshi NakanoShin-suke YoshidaJun-ichi SasakiMiki KashiwagiAmi MizunoTakuya MatsumotoBiomaterials containing components similar to the native biological tissue would have benefits as an implantable scaffold material. To obtain such biomimetic materials, cells may be great contributors because of their crucial roles in synthetic organics. In addition, the synthesized organics—especially those derived from osteogenic differentiated cells—become a place where mineral crystals nucleate and grow even in vitro. Therefore to fabricate an organic/inorganic composite material, which is similar to the biological osteoid tissue, bone marrow derived mesenchymal stem cells (BMSCs) were cultured in a 3D fibrin gel in this study. BMSCs secreted bone-related proteins that enhanced the biomineralization within the gel when the cells were cultured with an osteogenic differentiation medium. The compositions of both synthesized matrices and precipitated minerals in the obtained materials altered depending on the cell culture period. The mineral obtained in the 3D gel showed low crystalline hydroxyapatite. The composite materials also showed excellent osteoconductivity with new bone formation when implanted in mice tibiae. Thus, we demonstrated the contributions of cells for fabricating implantable organic/inorganic composite gel materials and a method for controlling the material composition in the gel. This cell-based material fabrication method would be a novel method to fabricate organic/inorganic composite biomimetic materials for bone tissue engineering. http://www.mdpi.com/1996-1944/4/1/327/hydrogelorganic/inorganic composite3Dbiomimetic material |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Takayoshi Nakano Shin-suke Yoshida Jun-ichi Sasaki Miki Kashiwagi Ami Mizuno Takuya Matsumoto |
spellingShingle |
Takayoshi Nakano Shin-suke Yoshida Jun-ichi Sasaki Miki Kashiwagi Ami Mizuno Takuya Matsumoto Cell-Based Fabrication of Organic/Inorganic Composite Gel Material Materials hydrogel organic/inorganic composite 3D biomimetic material |
author_facet |
Takayoshi Nakano Shin-suke Yoshida Jun-ichi Sasaki Miki Kashiwagi Ami Mizuno Takuya Matsumoto |
author_sort |
Takayoshi Nakano |
title |
Cell-Based Fabrication of Organic/Inorganic Composite Gel Material |
title_short |
Cell-Based Fabrication of Organic/Inorganic Composite Gel Material |
title_full |
Cell-Based Fabrication of Organic/Inorganic Composite Gel Material |
title_fullStr |
Cell-Based Fabrication of Organic/Inorganic Composite Gel Material |
title_full_unstemmed |
Cell-Based Fabrication of Organic/Inorganic Composite Gel Material |
title_sort |
cell-based fabrication of organic/inorganic composite gel material |
publisher |
MDPI AG |
series |
Materials |
issn |
1996-1944 |
publishDate |
2011-01-01 |
description |
Biomaterials containing components similar to the native biological tissue would have benefits as an implantable scaffold material. To obtain such biomimetic materials, cells may be great contributors because of their crucial roles in synthetic organics. In addition, the synthesized organics—especially those derived from osteogenic differentiated cells—become a place where mineral crystals nucleate and grow even in vitro. Therefore to fabricate an organic/inorganic composite material, which is similar to the biological osteoid tissue, bone marrow derived mesenchymal stem cells (BMSCs) were cultured in a 3D fibrin gel in this study. BMSCs secreted bone-related proteins that enhanced the biomineralization within the gel when the cells were cultured with an osteogenic differentiation medium. The compositions of both synthesized matrices and precipitated minerals in the obtained materials altered depending on the cell culture period. The mineral obtained in the 3D gel showed low crystalline hydroxyapatite. The composite materials also showed excellent osteoconductivity with new bone formation when implanted in mice tibiae. Thus, we demonstrated the contributions of cells for fabricating implantable organic/inorganic composite gel materials and a method for controlling the material composition in the gel. This cell-based material fabrication method would be a novel method to fabricate organic/inorganic composite biomimetic materials for bone tissue engineering. |
topic |
hydrogel organic/inorganic composite 3D biomimetic material |
url |
http://www.mdpi.com/1996-1944/4/1/327/ |
work_keys_str_mv |
AT takayoshinakano cellbasedfabricationoforganicinorganiccompositegelmaterial AT shinsukeyoshida cellbasedfabricationoforganicinorganiccompositegelmaterial AT junichisasaki cellbasedfabricationoforganicinorganiccompositegelmaterial AT mikikashiwagi cellbasedfabricationoforganicinorganiccompositegelmaterial AT amimizuno cellbasedfabricationoforganicinorganiccompositegelmaterial AT takuyamatsumoto cellbasedfabricationoforganicinorganiccompositegelmaterial |
_version_ |
1725645971851837440 |