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  3. Adsorption of Enamel Matrix Proteins to a Bovine Derived Bone Grafting Material and its Regulation of Cell Adhesion, Proliferation and Differentiation
 

Adsorption of Enamel Matrix Proteins to a Bovine Derived Bone Grafting Material and its Regulation of Cell Adhesion, Proliferation and Differentiation

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BORIS DOI
10.7892/boris.6671
Date of Publication
2012
Publication Type
Article
Division/Institute

Zahnmedizinische Klin...

Universitätsklinik fü...

Institut für Anatomie...

Zahnmedizinische Klin...

Author
Miron, Richard J
Bosshardt, Dieter
Zahnmedizinische Kliniken, Klinik für Parodontologie
Hedbom, Erik
Universitätsklinik für Schädel-, Kiefer- und Gesichtschirurgie
Zhang, Yufeng
Haenni, Beat
Institut für Anatomie
Buser, Daniel Albin
Zahnmedizinische Kliniken, Klinik für Oralchirurgie und Stomatologie
Sculean, Anton
Zahnmedizinische Kliniken, Klinik für Parodontologie
Subject(s)

600 - Technology::610...

Series
Journal of periodontology
ISSN or ISBN (if monograph)
0022-3492
Publisher
American Academy of Periodontology
Language
English
Publisher DOI
10.1902/jop.2011.110480
PubMed ID
22141360
Uncontrolled Keywords

Biocompatible materia...

blood proteins

bone regeneration

enamel matrix protein...

guided tissue regener...

periodontal

tissue engineering

Description
The use of various combinations of enamel matrix derivative (EMD) and grafting materials has been shown to promote periodontal wound healing/regeneration. However, the downstream cellular behavior of periodontal ligament (PDL) cells and osteoblasts has not yet been studied. Furthermore, it is unknown to what extent the bleeding during regenerative surgery may influence the adsorption of exogenous proteins to the surface of bone grafting materials and the subsequent cellular behavior. In the present study, the aim is to test EMD adsorption to the surface of natural bone mineral (NBM) particles in the presence of blood and determine the effect of EMD coating to NBM particles on downstream cellular pathways, such as adhesion, proliferation, and differentiation of primary human osteoblasts and PDL cells.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/77146
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jop%2E2011%2E110480.pdftextAdobe PDF2.72 MBpublisherpublished restricted
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