Confinement and Manipulation of Actin Filaments by Electric Fields

Loading...
Thumbnail Image

Related Collections

Degree type

Discipline

Subject

Funder

Grant number

License

Copyright date

Distributor

Related resources

Author

Arsenault, Mark E
Zhao, Hui
Purohit, Prashant
Goldman, Yale E

Contributor

Abstract

When an AC electric field was applied across a small gap between two metal electrodes elevated above a surface, rhodamine-phalloidin-labeled actin filaments were attracted to the gap and became suspended between the two electrodes. The variance of each filament's horizontal, lateral displacement was measured as a function of electric field intensity and position along the filament. markedly decreased as the electric field intensity increased. Hypothesizing that the electric field induces tension in the filament, we estimated the tension using a linear, Brownian dynamic model. Our experimental method provides a novel means for trapping and manipulating biological filaments and for probing the surface conductance and mechanical properties of single polymers.

Advisor

Date Range for Data Collection (Start Date)

Date Range for Data Collection (End Date)

Digital Object Identifier

Series name and number

Publication date

2007-08-10

Journal title

Volume number

Issue number

Publisher

Publisher DOI

Journal Issues

Comments

Postprint version. Published in Biophysical Journal, Volume 93, August 2007, pages L42-L44. Publisher URL: http://dx.doi.org/10.1529/biophysj.107.114538

Recommended citation

Collection