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The pH-dependent electrostatic interaction of a metal nanoparticle with the MS2 virus-like particles

Published 25 May 2019 in cond-mat.soft, cond-mat.other, physics.bio-ph, and q-bio.QM | (1905.10567v1)

Abstract: The electrostatic interaction of metal nanoparticles with viruses is attracting great interest due to their antiviral activity and their role in enhancing the detection of viruses at ultra-low concentrations. We model the MS2 virus devoid of its single strand RNA core using a core-shell model. The dependence of the inner and outer surface charge density on the pH is taken into account in our model of the interaction. Varying the pH causes a change in the sign of the outer surface charge leading to the attractive-repulsive transition in the electrostatic interaction between the MS2 virus and metal nanoparticle at pH = 4.

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