Entries of Schuessele, Andrea on the publication server
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Number of items: 7.
Article
Schuessele, Andrea, Mayr, H., Teßmar, Jörg
and Göpferich, Achim
(2009)
Enhanced BMP-2 performance on hydroxyapatite ceramic surfaces.
Journal of Biomedical Materials Research Part A 90A (4), pp. 959-971.
Fulltext not available.
and Göpferich, Achim
(2009)
Enhanced BMP-2 performance on hydroxyapatite ceramic surfaces.
Journal of Biomedical Materials Research Part A 90A (4), pp. 959-971.
Fulltext not available.
Schuessele, Andrea and Bauer-Brandl, A.
(2003)
Note on the measurement of flowability according to the European pharmacopoeia.
International Journal of Pharmaceutics 257, pp. 301-304.
Fulltext not available.
Book section
Schuessele, Andrea, Volk, B., Mayr, H., Blunk, Torsten, Schulz, M. B. and Göpferich, Achim
(2005)
Surface modification of hydroxyapatite ceramic to modulate cell adhesion and improve tissue generation.
In: Ravaglioli, A. and Krajewski, A., (eds.)
Proceedings of the 9th conference on ceramics, cells and tissues: chemistry and microstructure.
Forli.
Fulltext not available.
Conference or workshop item
Schuessele, Andrea, Mayr, H., Schulz, M. B., Blunk, Torsten and Göpferich, Achim
(2005)
Immobilization of a model protein to hydroxyapatite ceramic surfaces by adsorption and covalent coupling.
In: Jahrestagung der Dt. Gesellschaft für Biomaterialien, Würzburg.
Fulltext not available.
Schuessele, Andrea, Volk, B., Deisinger, U., Stenzel, F., Göpferich, Achim and Schulz, M. B.
(2004)
PEGgrafted inorganic surfaces for the control of stem cell adhesion.
In: International Meeting on Pharmaceutics, Biopharmaceutics and Pharmaceutical Technology, Nürnberg.
Fulltext not available.
Schuessele, Andrea, Volk, B., Mayr, H., Skofitsch, F., Schulz, M. B. and Göpferich, Achim
(2004)
PEGylation of hydroxyapatite ceramics by reductive amination.
In: Strategies in Tissue Engineering, Würzburg.
Fulltext not available.
Schuessele, Andrea, Volk, B., Mayr, H., Blunk, Torsten, Schulz, M. B. and Göpferich, Achim
(2004)
Surface modification of hydroxyapatite ceramic to modulate cell adhesion and improve tissue generation.
In: 9th Conference on ceramics, cells and tissues, Faenza.
Fulltext not available.
