Stochastic electrotransport selectively enhances the transport of highly electromobile molecules.
basic_science · Level V
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- Record sourced from PubMed, PMID 26578787.
- Also identified by DOI 10.1073/pnas.1510133112 and PMC identifier 4655572.
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Abstract
Nondestructive chemical processing of porous samples such as fixed biological tissues typically relies on molecular diffusion. Diffusion into a porous structure is a slow process that significantly delays completion of chemical processing. Here, we present a novel electrokinetic method termed stochastic electrotransport for rapid nondestructive processing of porous samples. This method uses a rotational electric field to selectively disperse highly electromobile molecules throughout a porous sample without displacing the low-electromobility molecules that constitute the sample. Using computational models, we show that stochastic electrotransport can rapidly disperse electromobile molecules in a porous medium. We apply this method to completely clear mouse organs within 1-3 days and to stain them with nuclear dyes, proteins, and antibodies within 1 day. Our results demonstrate the potential of stochastic electrotransport to process large and dense tissue samples that were previously infeasible in time when relying on diffusion.
Medical subject headings
- Antibodies
- Coloring Agents
- Models, Biological
- Models, Chemical