The versatility of the modified micro-Bradford CaPE assay was supported by the results with the strongly glycosylated glycophorin, which did not deviate excessively from the other protein preparations either in the rate of color development or in the sensitivity, whereas it showed very slow color de
Thermophoresis of single stranded DNA
β Scribed by Philipp Reineck; Christoph J. Wienken; Dieter Braun
- Publisher
- John Wiley and Sons
- Year
- 2010
- Tongue
- English
- Weight
- 308 KB
- Volume
- 31
- Category
- Article
- ISSN
- 0173-0835
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β¦ Synopsis
Abstract
The manipulation and analysis of biomolecules in native bulk solution is highly desired; however, few methods are available. In thermophoresis, the thermal analog to electrophoresis, molecules are moved along a microscopic temperature gradient. Its theoretical foundation is still under debate, but practical applications for analytics in biology show considerable potential. Here we measured the thermophoresis of highly diluted single stranded DNA using an allβoptical capillary approach. Temperature gradients were created locally by an infrared laser. The thermal depletion of oligonucleotides of between 5 and 50 bases in length were investigated by fluorescence at various salt concentrations. To a good approximation, the previously tested capacitor model describes thermophoresis: the Soret coefficient linearly depends on the Debye length and is proportional to the DNA length to the power of 0.35, dictated by the conformationβbased size scaling of the diffusion coefficient. The results form the basis for quantitative DNA analytics using thermophoresis.
π SIMILAR VOLUMES
Equation (9) on page 2233 should read: The equation following Eq. (10) on page 2233 should read: 4H%z(h/bc)g g = Nro4 In these equations, N is Avogadro's number.