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Updated: Jun 11, 2025

Zika Virus Infectious Cell Culture System and the In Vitro Prophylactic Effect of Interferons
Published on: August 23, 2016
Protein kinase R induced by type I interferons is a main regulator of reactive microglia in Zika virus infection
Violaine Bortolin1, Zeyni Mansuroglu1, Laurine Conquet2
1CNRS, Inserm, Institut Cochin, Université Paris Cité, Paris, France.
Abstract:
Microglial cells are the phagocytic cells of the brain that under physiological conditions participate in brain homeostasis and surveillance. Under pathogenic states, microglia undergoes strong morphological and transcriptional changes potentially leading to sustained neuroinflammation, brain damage, and cognitive disorders. Postnatal and adult Zika virus (ZIKV) brain infection is characterized by the induction of reactive microglia associated with brain inflammation, synapse loss and neuropathogenesis. Contrary to neurons, microglial cells are not infected by ZIKV thus raising the question of the mechanism governing ZIKV-induced microglia's reactivity. In this work, we have questioned the role of exogenous, neuronal type I interferons (IFNs-I) in regulating ZIKV-induced microglia's reactivity. Primary cultured microglial cells were either treated with conditioned media from ZIKV-infected mature neurons or co-cultured with ZIKV-infected neurons. Using either an antibody directed against the IFNAR receptor that neutralizes the IFNs-I response or Ifnar-/-microglial cells, we demonstrate that IFNs-I produced by ZIKV-infected neurons are the main regulators of the phagocytic capacity and the pro-inflammatory gene expression profile of reactive, non-infected microglial cells. We identify protein kinase R (PKR), whose expression is activated by IFNs-I, as a major regulator of the phagocytic capacity, pro-inflammatory response, and morphological changes of microglia induced by IFNs-I while up-regulating STAT1 phosphorylation and IRF1 expression. Results obtained herein in vitro with primary cultured cells and in vivo in ZIKV-infected adult immunocompetent mice, unravel a role for IFNs-I and PKR in directly regulating microglia's reactivity that could be at work in other infectious and non-infectious brain pathologies.
Insights
Zika virus infection triggers reactive microglia via neuronal type I interferons (IFNs-I). These IFNs-I activate protein kinase R (PKR), controlling microglial responses and brain inflammation in Zika virus infection.
Area of Science:
- Neuroscience
- Immunology
- Virology
Background:
- Microglial cells maintain brain homeostasis but can cause neuroinflammation and damage when reactive.
- Zika virus (ZIKV) infection induces reactive microglia, leading to brain inflammation and cognitive deficits.
- Microglia are not infected by ZIKV, suggesting indirect mechanisms drive their reactivity.
Purpose of the Study:
- Investigate the role of neuronal type I interferons (IFNs-I) in regulating ZIKV-induced microglial reactivity.
- Identify key molecular pathways mediating microglial responses to ZIKV-infected neurons.
Main Methods:
- Primary microglial cells treated with conditioned media from ZIKV-infected neurons or co-cultured with infected neurons.
- Utilized IFNAR receptor-blocking antibodies and Ifnar-/- microglial cells.
- Analyzed microglial phagocytic capacity, pro-inflammatory gene expression, STAT1 phosphorylation, and IRF1 expression.
Main Results:
- Neuronal type I interferons (IFNs-I) are the primary regulators of ZIKV-induced microglial reactivity in non-infected cells.
- IFN-I signaling activates protein kinase R (PKR) in microglia.
- PKR activation mediates microglial phagocytic capacity, pro-inflammatory gene expression, and morphological changes.
Conclusions:
- Neuronal IFNs-I directly regulate microglia reactivity during ZIKV infection.
- PKR is a key mediator of IFN-I-induced microglial responses.
- This IFN-I-PKR pathway may be relevant in other neurological pathologies.
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