Delayed skeletal muscle repair following inflammatory damage in simulated agent-based models of muscle regeneration

Author:

Khuu StephanieORCID,Fernandez Justin W.,Handsfield Geoffrey G.ORCID

Abstract

Healthy skeletal muscle undergoes repair in response to mechanically localised strains during activities such as exercise. The ability of cells to transduce the external stimuli into a cascade of cell signalling responses is important to the process of muscle repair and regeneration. In chronic myopathies such as Duchenne muscular dystrophy and inflammatory myopathies, muscle is often subject to chronic necrosis and inflammation that perturbs tissue homeostasis and leads to non-localised, widespread damage across the tissue. Here we present an agent-based model that simulates muscle repair in response to both localised eccentric contractions similar to what would be experienced during exercise, and non-localised widespread inflammatory damage that is present in chronic disease. Computational modelling of muscle repair allows forin silicoexploration of phenomena related to muscle disease. In our model, widespread inflammation led to delayed clearance of tissue damage, and delayed repair for recovery of initial fibril counts at all damage levels. Macrophage recruitment was delayed and significantly higher in widespread compared to localised damage. At higher damage percentages of 10%, widespread damage led to impaired muscle regeneration and changes in muscle geometry that represented alterations commonly observed in chronic myopathies, such as fibrosis. This computational work offers insight into the progression and aetiology of inflammatory muscle diseases, and suggests a focus on the muscle regeneration cascade in understanding the progression of muscle damage in inflammatory myopathies.

Funder

Robertson Foundation

Publisher

Public Library of Science (PLoS)

Subject

Computational Theory and Mathematics,Cellular and Molecular Neuroscience,Genetics,Molecular Biology,Ecology,Modeling and Simulation,Ecology, Evolution, Behavior and Systematics

Reference90 articles.

1. Optimization and Control of Agent-Based Models in Biology;G An;A Perspective. Bull Math Biol,2017

2. Agent-based computational model investigates muscle-specific responses to disuse-induced atrophy;KS Martin;J Appl Physiol,2015

3. Multiscale models of skeletal muscle reveal the complex effects of muscular dystrophy on tissue mechanics and damage susceptibility.;KM Virgilio;Interface Focus,2015

4. A Coupled Mechanobiological Model of Muscle Regeneration In Cerebral Palsy.;S Khuu;Front Bioeng Biotechnol.,2021

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