Flow-induced polymer translocation through narrow and patterned channels

Author(s)
Arash Nikoubashman, Christos Likos
Abstract

We consider linear and branched polymers driven through narrow and patterned channels by imposing a Poiseuille flow on the ambient solvent. We establish, by means of scaling arguments, that the translocation probability of dendrimers through the pore is independent of the number of monomers and that it takes place above a viscosity-dependent critical external current. When the channel walls are smooth, the translocation times of linear and branched polymers with the same monomer number are very similar. However, for walls that are decorated with attractive patches, dramatic differences show up: whereas a dendrimer successively docks at the patches and "walks" from one to the next, being carried away by the solvent flow, linear chains spread themselves along the channel wall without achieving translocation within simulation times. Our findings are relevant for, e.g., drug delivery through dendritic carrier molecules in capillary arterioles.

Organisation(s)
Computational and Soft Matter Physics
External organisation(s)
Heinrich-Heine-Universität Düsseldorf
Journal
Journal of Chemical Physics
Volume
133
No. of pages
11
ISSN
0021-9606
DOI
https://doi.org/10.1063/1.3466918
Publication date
2010
Peer reviewed
Yes
Austrian Fields of Science 2012
1030 Physics, Astronomy
Portal url
https://ucrisportal.univie.ac.at/en/publications/c98c4170-7ebf-4b60-8778-8a99d9cb84e9