Bone Regeneration Using Dedifferentiated Fat Cells with PuraMatrix^<TM>
スポンサーリンク
概要
- 論文の詳細を見る
Dedifferentiated fat cells (DFATs) possess osteogenic potential making them a promising cell source for bone regeneration. PuraMatrix^<TM> (PM), a self-assembling peptide scaffold, produces a nanoscale environment for cells. We examined radiologically the osteogenic potential and application of DFATs with PM for bone regeneration in rabbit calvarial defect models. DFATs were obtained from ceiling culture, and subsequently cultured in normal media (NM) or osteogenic media (OM). Their in vitro osteogenic differentiation potential was assessed using alizarin red staining, and by measuring osteocalcin expression and calcium concentration. Eighteen 6-mm calvarial defects were randomly treated in vivo with osteo-induced DFATs+PM, DFATs+PM, and PM scaffold, or no treatment. After 8 weeks, calvaria were harvested and the degree of healing between treatment groups was radiologically compared. Osteocalcin expression in OM significantly increased at 7 and 14 days, as well as calcium concentration at 21 days. There was no difference in healing among the four groups radiologically. Rabbit DFATs efficiently differentiate into osteoblasts when cultured in OM. To demonstrate DFAT usefulness in vivo, progressively more sophisticated animal models must be developed.
- 日本再生歯科医学会の論文
- 2008-12-30
著者
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Omasa Takeshi
Department of Biotechnology, Graduate School of Engineering, Osaka University
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Omasa Takeshi
Department Of Biotechnology Graduate School Of Engineering Osaka University
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HASHIMOTO Yoshiya
Department of Biomaterials, Osaka Dental University
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Hashimoto Yoshiya
Department Of Biomaterials Osaka Dental University
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Imai Koichi
Department Of Biomaterials Osaka Dental University
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Kotani Junichiro
Department of Anesthesiology, Osaka Dental University
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Kotani Junichiro
Osaka Dental Univ. Osaka Jpn
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Kotani J
Department Of Anesthesiology Osaka Dental University
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Kotani Junichiro
Department Of Anesthesiology Osaka Dental University
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Momota Yoshihiro
Department Of Anesthesiology Osaka Dental University
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KISHIMOTO Naotaka
Department of Anesthesiology, Osaka Dental University
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MORI Ryoichi
Department of Pharmacology, Osaka Dental University
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Mori Ryoichi
Department Of Pharmacology Osaka Dental University
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Mori Ryoichi
Department Of Computer Science And Engineering Kanagawa Institute Of Technology
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Matsuda Yoshiko
Department Of Anesthesiology Osaka Dental University
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Kishimoto Naotaka
Department Of Anesthesiology Osaka Dental University
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Omasa Takeshi
Department Of Biological Science And Technology Institute Of Technology And Science The University O
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Matsuda Yoshiko
Osaka Dental Univ. Osaka Jpn
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Omasa Takeshi
Department Of Biological Science And Technology Biosystems Engineering Institute Of Technology And Science The University Of Tokushima
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IMAI Koichi
Department of Biomaterials, Osaka Dental University
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