Wir verwenden Cookies und Analyse-Tools, um die Nutzerfreundlichkeit der Internet-Seite zu verbessern und für Marketingzwecke. Wenn Sie fortfahren, diese Seite zu verwenden, nehmen wir an, dass Sie damit einverstanden sind. Zur Datenschutzerklärung.
Biomaterials by the supramolecular control of nanofibers
Details
In contemporary biomaterials research bioactive polymers are state of the art since they can interact with the in vivo environment. Especially nanofiber morphologies are shown to form a promising synthetic niche. The aim of this thesis is to develop a new concept to make bioactive thermoplastic elastomers (TPEs) by using their supramolecular interactions. In a modular and supramolecular approach bioactive peptides are equipped with the same well-defined hard segment units as present in the polymer. A desired polymer is formed by simple mixing the polymer with the desired bioactive peptide(s). Preferably dynamic and bioactive nanorods are formed due to the designed supramolecular interactions between the hard segments. In this way the good mechanical properties of TPEs are combined with the versatility of self assembly. The use of well-designed supramolecular interactions to produce bioactive nanorods embedded in a biocompatible soft matrix is shown to be an exciting new approach to bioactive thermoplastic elastomers and holds great potential for soft tissue engineering.
Autorentext
Eva Wisse, PhD: studied Biomedical Engineering at Eindhoven University of Technology (2003). PhD with prof. dr. E. W. Meijer, main results described in this book (2007). Scientist in biomaterials research at DSM Research, Geleen (2010). Current position in medical device product development at Philips Applied Technologies, Eindhoven.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783639295672
- Sprache Englisch
- Genre Chemie
- Größe H220mm x B150mm x T10mm
- Jahr 2010
- EAN 9783639295672
- Format Kartonierter Einband (Kt)
- ISBN 978-3-639-29567-2
- Titel Biomaterials by the supramolecular control of nanofibers
- Autor Eva Wisse
- Untertitel a modular approach
- Gewicht 261g
- Herausgeber VDM Verlag
- Anzahl Seiten 164