Dentin-derived BMP-2 and Odontoblast Differentiation
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概要
- 論文の詳細を見る
- 2010-06-01
著者
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Araujo F.
Department Of Pediatric Dentistry School Of Dentistry Federal University Of Rio Grande Do Sul
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SHI S.
Center for Craniofacial Molecular Biology, University of Southern California
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ZHANG Z.
Angiogenesis Research Laboratory, and Department of Cariology, Restorative Sciences, and Endodontics
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Nor J.
Angiogenesis Research Laboratory Department Of Cariology Restorative Sciences And Endodontics Univer
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CASAGRANDE L.
Department of Pediatric Dentistry, School of Dentistry, Federal University of Rio Grande do Sul
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DEMARCO F.
Angiogenesis Research Laboratory, Department of Cariology, Restorative Sciences and Endodontics, Uni
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Demarco F.
Angiogenesis Research Laboratory Department Of Cariology Restorative Sciences And Endodontics Univer
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Casagrande L.
Department Of Pediatric Dentistry School Of Dentistry Federal University Of Rio Grande Do Sul
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Shi S.
Center For Craniofacial Molecular Biology School Of Dentistry University Of Southern California
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Nor J.
Angiogenesis Research Laboratory Department Of Cariology Restorative Sciences And Endodontics Univer
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Casagrande L.
Department Of Cardiology Restorative Sciences And Endodontics University Of Michigan School Of Denti
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Zhang Z.
Angiogenesis Research Laboratory Department Of Cariology Restorative Sciences And Endodontics University Of Michigan School Of Dentistry
関連論文
- Inhibition of Human Dental Pulp Stem Cell Differentiation by Notch Signaling
- Human Hertwig's Epithelial Root Sheath Cells Play Crucial Roles in Cementum Formation
- Effect of PTK/ZK on the Angiogenic Switch in Head and Neck Tumors
- Dentin-derived BMP-2 and Odontoblast Differentiation
- SHED Differentiate into Functional Odontoblasts and Endothelium
- Mesenchymal Stem Cells Derived from Dental Tissues vs. Those from Other Sources : Their Biology and Role in Regenerative Medicine
- Differentiating Dental Pulp Cells via RGD-Dendrimer Conjugates
- Activation of iCaspase-9 in Neovessels Inhibits Oral Tumor Progression
- Eph/ephrinB Mediate Dental Pulp Stem Cell Mobilization and Function
- Mouse Mandible Contains Distinctive Mesenchymal Stem Cells