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Updated: Mar 13, 2026

Using RNA-interference to Investigate the Innate Immune Response in Mouse Macrophages
Published on: November 3, 2014
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.
Background:
Macrophages are essential to innate immunity against many pathogens, but some pathogens also target macrophages as routes to infection. The Porcine Reproductive and Respiratory Syndrome virus (PRRSV) is an RNA virus that infects porcine alveolar macrophages (PAMs) causing devastating impact on global pig production. Identifying the cellular mechanisms that mediate PAM susceptibility to the virus is crucial for developing effective interventions. Previous evidence suggests that the scavenger receptor CD163 is essential for productive infection of PAMs with PRRSV. Here we use an integrative in-vitro-in-silico modelling approach to determine whether and how PAM susceptibility to PRRSV changes over time, to assess the role of CD163 expression on such changes, and to infer other potential causative mechanisms altering cell susceptibility.
Results:
Our in-vitro experiment showed that PAM susceptibility to PRRSV changed considerably over incubation time. Moreover, an increasing proportion of PAMs apparently lacking CD163 were found susceptible to PRRSV at the later incubation stages, thus conflicting with current understanding that CD163 is essential for productive infection of PAMs with PRRSV. We developed process based dynamic mathematical models and fitted these to the data to assess alternative hypotheses regarding potential underlying mechanisms for the observed susceptibility and biomarker trends. The models informed by our data support the hypothesis that although CD163 may have enhanced cell susceptibility, it was not essential for productive infection in our study. Instead the models promote the existence of a reversible cellular state, such as macrophage polarization, mediated in a density dependent manner by autocrine factors, to be responsible for the observed kinetics in cell susceptibility.
Conclusions:
Our dynamic model-inference approach provides strong support that PAM susceptibility to the PRRS virus is transient, reversible and can be mediated by compounds produced by the target cells themselves, and that these can render PAMs lacking the CD163 receptor susceptible to PRRSV. The results have implications for the development of therapeutics aiming to boost target cell resistance and prompt future investigation of dynamic changes in macrophage susceptibility to PRRSV and other viruses.
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.
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