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Dielectrophoretic manipulation and solubility of protein nanofibrils formed from crude crystallins
- Source :
- ELECTROPHORESIS. 34:1105-1112
- Publication Year :
- 2013
- Publisher :
- Wiley, 2013.
-
Abstract
- Protein nanofibrils and nanotubes are now widely accepted as having potential for use in the field of bionanotechnology. For this to be a feasible alternative to existing technologies, there is a need for a commercially viable source. Previous work has identified amyloid fibrils formed from crude crystallin proteins as such a source, since these fibrils can be produced in large quantities at a low cost. Applications include use of fibrils as templates for the formation of nanowires or as biosensing scaffolds. There remains a number of practical considerations, such as stability and the ability to control their arrangement. In this study, crude crystallin amyloid fibrils are shown to be stable in a range of biological and clean room solvents, with the fibril presence confirmed by transmission electron microscopy and the thioflavin T fluorescent assay. The fibrils were also immobilised between microelectrodes using dielectrophoresis, which enabled the recording of I-V curves for small numbers of fibrils. This investigation showed the fibrils to have low conductivity, with current values in the range of 10(-10) A recorded. This low conductivity could be increased through modification, or alternately, the fibrils could be used unmodified for applications where they can act as templates or high surface area nanoscaffolds.
Details
- ISSN :
- 01730835
- Volume :
- 34
- Database :
- OpenAIRE
- Journal :
- ELECTROPHORESIS
- Accession number :
- edsair.doi...........e6cb8b9b854b37d4b9111068f7cff7d9