DocumentCode
1244291
Title
Nanotechnology and biomimetics with 2-D protein crystals
Author
Sleyter, U.B. ; Schuster, B. ; Pum, D.
Author_Institution
Center for Ultrastructure Res., Univ. fur Bodenkultur, Wien, Austria
Volume
22
Issue
3
fYear
2003
Firstpage
140
Lastpage
150
Abstract
The application potential of crystalline bacterial cell surface layers (S-layers) as nature-tailored supramolecular structures is described. The fabrication of supramolecular devices requires molecules that are capable of interlocking in a well-defined manner. Thus, molecular self-assembly systems that exploit the molecular-scale manufacturing precision of biological systems are prime candidates for supramolecular engineering. Although self-assembly of molecules is an ubiquitous strategy of morphogenesis in nature, researchers in the area of molecular nanotechnology and biomimetics are only beginning to exploit its potential for the functionalization of surfaces and interfaces as well as for the production of biomimetic membranes and encapsulation systems. This article presents an overview of a new approach in nanostructure technology and biomimetics based on crystalline bacterial cell surface layers.
Keywords
biomimetics; membranes; microorganisms; molecular biophysics; nanostructured materials; nanotechnology; proteins; reviews; S-layers; biological systems; crystalline bacterial cell surface layers; interfaces; molecular self-assembly; molecular-scale manufacturing precision; morphogenesis; nanostructure technology; supramolecular devices fabrication; supramolecular engineering; surfaces functionalization; Biological systems; Biomimetics; Crystallization; Fabrication; Manufacturing; Microorganisms; Nanotechnology; Production systems; Proteins; Self-assembly; Bacterial Proteins; Biocompatible Materials; Biomimetic Materials; Biomimetics; Crystallization; Macromolecular Substances; Membrane Glycoproteins; Nanotechnology; Protein Conformation;
fLanguage
English
Journal_Title
Engineering in Medicine and Biology Magazine, IEEE
Publisher
ieee
ISSN
0739-5175
Type
jour
DOI
10.1109/MEMB.2003.1213637
Filename
1213637
Link To Document