In silico modelling of neuron signal impact of cytokine storm-induced demyelination

Author:

Adonias Geoflly L.1,Siljak Harun2,Balasubramaniam Sasitharan3,Barros Michael Taynnan4ORCID

Affiliation:

1. Walton Institute for Information and Communication Systems Science, South East Technology University , Waterford, Ireland

2. Department of Electronic and Electrical Engineering, Trinity College Dublin , Dublin, Ireland

3. School of Computing, University of Nebraska-Lincoln , Lincoln, NE, USA

4. School of Computer Science and Electronic Engineering, University of Essex , Colchester, UK

Abstract

In this study, we develop an in silico model of a neuron’s behaviour under demyelination caused by a cytokine storm to investigate the effects of viral infections in the brain. We use a comprehensive model to measure how cytokine-induced demyelination affects the propagation of action potential (AP) signals within a neuron. We analysed the effects of neuron-neuron communications by applying information and communication theory at different levels of demyelination. Our simulations demonstrate that virus-induced degeneration can play a role in the signal power and spiking rate, which compromise the propagation and processing of information between neurons. We propose a transfer function to model the weakening effects on the AP. Our results show that demyelination induced by a cytokine storm not only degrades the signal but also impairs its propagation within the axon. Our proposed in silico model can analyse virus-induced neurodegeneration and enhance our understanding of virus-induced demyelination.

Funder

National Science Foundation

Publisher

The Royal Society

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