| Literature DB >> 18843380 |
J Adams1, G E Fantner, L W Fisher, P K Hansma.
Abstract
The fracture resistance of biomineralized tissues such as bone, dentin, and abalone is greatly enhanced through the nanoscale interactions of stiff inorganic mineral components with soft organic adhesive components. A proper understanding of the interactions that occur within the organic component, and between the organic and inorganic components, is therefore critical for a complete understanding of the mechanics of these tissues. In this paper, we use Atomic Force Microscope (AFM) force spectroscopy and dynamic force spectroscopy to explore the effect of ionic interactions within a nanoscale system consisting of networks of Dentin Matrix Protein 1 (DMP1) (a component of both bone and dentin organic matrix), a mica surface, and an AFM tip. We find that DMP1 is capable of dissipating large amounts of energy through an ion-mediated mechanism, and that the effectiveness increases with increasing ion valence.Entities:
Year: 2008 PMID: 18843380 PMCID: PMC2562612 DOI: 10.1088/0957-4484/19/38/384008
Source DB: PubMed Journal: Nanotechnology ISSN: 0957-4484 Impact factor: 3.874