Combining laboratory and mathematical models to infer mechanisms underlying kinetic changes in macrophage

Andrea Doeschl-Wilson1, Alison Wilson2, Jens Nielsen3

  • 1The Roslin Institute & R(D)SVS, University of Edinburgh, Easter Bush, Edinburgh, UK. Andrea.Wilson@roslin.ed.ac.uk.

BMC Systems Biology
|October 25, 2016
PubMed
Abstract

Insights

Porcine Reproductive and Respiratory Syndrome virus (PRRSV) infects pigs, causing significant economic losses. This study reveals that macrophage susceptibility to PRRSV is temporary and reversible, not solely dependent on the CD163 receptor.

Area of Science:

  • Veterinary Virology
  • Immunology
  • Mathematical Biology

Background:

  • Macrophages are crucial for innate immunity but can be exploited by pathogens.
  • Porcine Reproductive and Respiratory Syndrome virus (PRRSV) infects porcine alveolar macrophages (PAMs), impacting global pig production.
  • Understanding PAM susceptibility mechanisms is key for developing PRRSV interventions, with CD163 previously suggested as essential.

Purpose of the Study:

  • To investigate dynamic changes in PAM susceptibility to PRRSV over time.
  • To assess the role of CD163 expression in modulating this susceptibility.
  • To identify other potential mechanisms influencing PRRSV infection dynamics in PAMs.

Main Methods:

  • An integrative in vitro and in silico modeling approach was employed.
  • PAMs were incubated with PRRSV, and susceptibility was monitored over time.
  • Dynamic mathematical models were developed and fitted to experimental data to infer underlying mechanisms.

Main Results:

  • PAM susceptibility to PRRSV varied significantly with incubation time.
  • A notable proportion of CD163-negative PAMs became susceptible to PRRSV later in incubation.
  • Mathematical models supported that CD163 enhances but is not essential for PRRSV infection, suggesting a reversible cellular state.

Conclusions:

  • PRRSV susceptibility in PAMs is transient, reversible, and influenced by autocrine factors.
  • Macrophage polarization may mediate this dynamic susceptibility, rendering CD163-independent infection possible.
  • Findings suggest new therapeutic targets for enhancing host resistance to PRRSV.