Cell adhesion and tissue response to hydroxyapatite nanocrystal-coated poly (L-lactic acid) fabric(CELL AND TISSUE ENGINEERING)
スポンサーリンク
概要
- 論文の詳細を見る
Cell adhesion and tissue response to poly (L-lactic acid) (PLLA) fabric coated with nanosized hydroxyapatite (HAp) crystals were studied. The HAp nanocrystals were prepared by the wet chemical process followed by calcination at 800℃ with an anti-sintering agent to prevent calcination-induced sintering. After the PLLA fabric was hydrolyzed with an alkaline aqueous solution, the HAp nanocrystals were coated via ionic interaction between the calcium ions on the HAp and the carboxyl groups on the alkali-treated PLLA. The PLLA surface uniformly coated with the HAp nanocrystals was observed by scanning electron microscope. The ionic interaction between the HAp and the PLLA was estimated by FT-IR. Improved cell adhesion to the HAp nanocrystal-coated surface was demonstrated by in vitro testing using a mouse fibroblast cell line L929. Furthermore, reduced inflammatory response to the HAp nanocrystal-coated PLLA fabric (as compared with a non-treated one) was confirmed by a subcutaneous implantation test with rats. Thus the HAp nanocrystal-coated PLLA developed has possible efficacy as an implant material in the fields of general and orthopedic surgery, and as a cell scaffold in tissue engineering.
- 社団法人日本生物工学会の論文
著者
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Okada Masahiro
Department of Advanced Interdisciplinary Sciences, Graduate School of Engineering, Utsunomiya Univer
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NARAMA Isao
Department of Pathology, Faculty of Pharmaceutical Sciences, Setsunan University
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Narama Isao
Department Of Pathology Faculty Of Pharmaceutical Sciences Setsunan University
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Narama Isao
Department Of Comparative Pathology Faculty Of Veterinary Medicine Hokkaido University
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Okada Masahiro
Dep. Of Bioengineering Advanced Medical Engineering Center National Cardiovascular Center Res. Inst.
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FURUZONO Tsutomu
Department of Bioengineering, National Cardiovascular Center Research Institute
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Takakuda Kazuo
Department Of Biomechanical Engineering Institute Of Biomaterials And Bioengineering Tokyo Medical A
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Takakuda Kazuo
Department Of Biodesign Division Of Biosystems Institute Of Biomaterials And Bioengineering Tokyo Me
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Okada Masahiro
Department Of Bioengineering Advanced Medical Engineering Center National Cardiovascular Center Rese
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KOYAMA Yoshihisa
Department of Biomechanical Engineering, Institute of Biomaterials and Bioengineering, Tokyo Medical
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Koyama Yoshihisa
Department Of Biodesign Division Of Biosystems Institute Of Biomaterials And Bioengineering Tokyo Me
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Koyama Yoshihisa
Department Of Anatomy And Neuroscience Osaka University Graduate School Of Medicine
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Yanagida Hiroshi
Department of Bioengineering, Advanced Medical Engineering Center, National Cardiovascular Center Re
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Masuda Miwa
Department of Bioengineering, Advanced Medical Engineering Center, National Cardiovascular Center Re
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Ueki Mitsuki
Department of Bioengineering, Advanced Medical Engineering Center, National Cardiovascular Center Re
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Kitao Satoshi
Doubutsu Medical Center
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Masuda Miwa
Department Of Bioengineering Advanced Medical Engineering Center National Cardiovascular Center Rese
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Ueki Mitsuki
Department Of Bioengineering Advanced Medical Engineering Center National Cardiovascular Center Rese
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Okada Masahiro
Department Of Advanced Interdisciplinary Sciences Graduate School Of Engineering Utsunomiya Universi
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Furuzono Tsutomu
Dep. Of Bioengineering Advanced Medical Engineering Center National Cardiovascular Center Res. Inst.
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Furuzono Tsutomu
Department Of Bioengineering Advanced Medical Engineering Center National Cardiovascular Center Rese
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Yanagida Hiroshi
Department Of Bioengineering Advanced Medical Engineering Center National Cardiovascular Center Rese
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Furuzono Tsutomu
Department of Applied Chemistry and Chemical Engineering, Faculty of Engineering, Kagoshima University
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