Nanoscale and microscale confinement of biopolymers naturally occurs in cells and has been recently achieved in artificial structures designed for nanotechnological applications. Here, we present an extensive theoretical investigation of the conformations and shape of a biopolymer with varying stiffness confined to a narrow channel. Combining scaling arguments, analytical calculations, and Monte Carlo simulations, we identify various scaling regimes where master curves quantify the functional dependence of the polymer conformations on the chain stiffness and strength of confinement.

Conformations of confined biopolymers / Wagner, Frederik; Lattanzi, Gianluca; Frey, Erwin. - In: PHYSICAL REVIEW E, STATISTICAL, NONLINEAR, AND SOFT MATTER PHYSICS. - ISSN 1539-3755. - 75:5.1(2007), pp. 050902.1-050902.4. [10.1103/PhysRevE.75.050902]

Conformations of confined biopolymers

Lattanzi, Gianluca;
2007-01-01

Abstract

Nanoscale and microscale confinement of biopolymers naturally occurs in cells and has been recently achieved in artificial structures designed for nanotechnological applications. Here, we present an extensive theoretical investigation of the conformations and shape of a biopolymer with varying stiffness confined to a narrow channel. Combining scaling arguments, analytical calculations, and Monte Carlo simulations, we identify various scaling regimes where master curves quantify the functional dependence of the polymer conformations on the chain stiffness and strength of confinement.
2007
5.1
Wagner, Frederik; Lattanzi, Gianluca; Frey, Erwin
Conformations of confined biopolymers / Wagner, Frederik; Lattanzi, Gianluca; Frey, Erwin. - In: PHYSICAL REVIEW E, STATISTICAL, NONLINEAR, AND SOFT MATTER PHYSICS. - ISSN 1539-3755. - 75:5.1(2007), pp. 050902.1-050902.4. [10.1103/PhysRevE.75.050902]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/197747
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