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Single-walled carbon nanotube membrane accelerates active osteogenesis in the bone defect. : the possibility for guided bone regeneration membrane [an abstract of entire text]

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Please use this identifier to cite or link to this item:http://hdl.handle.net/2115/85139
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Title: Single-walled carbon nanotube membrane accelerates active osteogenesis in the bone defect. : the possibility for guided bone regeneration membrane [an abstract of entire text]
Other Titles: 単層カーボンナノチューブを用いた骨誘導再生膜の開発と骨再生能の評価 [全文の要約]
Authors: 徐, 易坤 Browse this author
Issue Date: 24-Mar-2022
Publisher: Hokkaido University
Abstract: Carbon nanotubes (CNTs) are investigated as biomaterials because of their chemical, physical, andbiological properties. We have been studying the application of CNTs as biomaterials and reportedthat CNTs have high compatibility with bone tissue.The guided bone regeneration (GBR) technique is commonly applied to reconstruct alveolar boneand treat peri-implant bone defects. For the GBR technique, a barrier membrane is used to cover thebone defects, preventing the entry of non-osteogenic cells like epithelial cells and fibroblasts in bonedefects. Furthermore, the membrane is desired to maintain a space for new bone formation. However,previous materials sometimes delayed bone regeneration in clinical practice because of theirmechanical and biological properties.In this study, we developed a CNT-based GBR membrane with the possibility to accelerate boneregeneration because of the high strength to make space and cellular shielding to induceosteogenesis. The CNT membrane was made by dispersion single-walled CNT (SWCNT) inhyaluronic acid solution and filtration. The CNT membrane has a nanostructure surface due to thebundle of SWCNT and showed high strength and hydrophilicity after oxidation. In addition, theproliferation of osteoblasts was promoted, whereas non-osteogenic cells were not. The CNTmembrane covered the bone defect made in rat calvaria. At 8 weeks after the surgery, more extensivebone formation was observed compared to the defect without membrane. The diffusion of CNT wasscarcely observed around the membrane. These results indicate that the CNT membrane hasadequate strength, stability, surface characteristics for osteoblast, and shielding properties topromote bone formation as a GBR membrane. Therefore, evidence of the safety and osteogenicpotential of CNTs in the further animal experiment for the clinical situation will be sufficient fortheir clinical application in the GBR technique.
Description: この博士論文全文の閲覧方法については、以下のサイトをご参照ください。
Description URI: https://www.lib.hokudai.ac.jp/dissertations/copy-guides/
Conffering University: 北海道大学
Degree Report Number: 甲第14993号
Degree Level: 博士
Degree Discipline: 歯学
Examination Committee Members: (主査) 教授 横山 敦郎, 教授 網塚 憲生, 教授 吉田 靖弘
Degree Affiliation: 歯学院(口腔医学専攻)
Type: theses (doctoral - abstract of entire text)
URI: http://hdl.handle.net/2115/85139
Appears in Collections:課程博士 (Doctorate by way of Advanced Course) > 歯学院(Graduate School of Dental Medicine)
学位論文 (Theses) > 博士 (歯学)

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