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Evaluation of Zika Virus-specific T-cell Responses in Immunoprivileged Organs of Infected Ifnar1-/- Mice
Published on: October 17, 2018
Zika virus infection modulates the metabolomic profile of microglial cells
Fodé Diop1, Thomas Vial2, Pauline Ferraris1
1MIVEGEC UMR 224, Univ Montpellier, IRD, CNRS, Montpellier, France.
Abstract:
Zika virus (ZIKV) is an emerging arbovirus of the Flaviviridae family. Although infection with ZIKV generally leads to mild disease, its recent emergence in the Americas has been associated with an increase in the development of the Guillain-Barré syndrome in adults, as well as with neurological complications, in particular congenital microcephaly, in new-borns. To date, little information is available on neuroinflammation induced by ZIKV, notably in microglial cells in the context of their metabolic activity, a series of chemical transformations that are essential for their growth, reproduction, structural maintenance and environmental responses. Therefore, in the present study we investigated the metabolomic profile of ZIKV-infected microglia. Microglial cells were exposed to ZIKV at different time points and were analyzed by a Liquid Chromatography-High Resolution mass spectrometry-based metabolomic approach. The results show that ZIKV infection in microglia leads to modulation of the expression of numerous metabolites, including lysophospholipids, particulary Lysophosphatidylcholine, and phospholipids such as Phosphatidylcholine, Phosphatidylserine, Ceramide and Sphingomyelin, and carboxylicic acids as Undecanedioic and Dodecanedioic acid. Some of these metabolites are involved in neuronal differentiation, regulation of apoptosis, virion architecture and viral replication. ZIKV infection was associated with concomitant secretion of inflammatory mediators linked with central nervous system inflammation such as IL-6, TNF-α, IL-1β, iNOS and NO. It also resulted in the upregulation of the expression of the gene encoding CX3CR1, a chemokine receptor known to regulate functional synapse plasticity and signaling between microglial cells. These findings highlight an important role for microglia and their metabolites in the process of neuroinflammation that occurs during ZIKV pathogenesis.
Insights
Zika virus (ZIKV) infection alters microglial cell metabolism, impacting neuroinflammation. This study reveals key metabolite changes and inflammatory responses, offering insights into ZIKV
Area of Science:
- Neuroscience
- Virology
- Metabolomics
Background:
- Zika virus (ZIKV) is an emerging arbovirus linked to severe neurological complications, including microcephaly.
- Neuroinflammation, particularly in microglial cells, is a critical aspect of ZIKV pathogenesis.
- Limited understanding exists regarding ZIKV's impact on microglial metabolic activity.
Purpose of the Study:
- To investigate the metabolomic profile of microglial cells following ZIKV infection.
- To identify specific metabolites modulated by ZIKV and their potential roles in neuroinflammation.
- To explore the relationship between ZIKV-induced metabolic changes and the activation of inflammatory pathways in microglia.
Main Methods:
- Microglial cells were exposed to ZIKV.
- Metabolomic profiling was performed using Liquid Chromatography-High Resolution mass spectrometry.
- Levels of inflammatory mediators (e.g., IL-6, TNF-α) and gene expression (CX3CR1) were analyzed.
Main Results:
- ZIKV infection significantly modulated the expression of lysophospholipids and phospholipids (e.g., Lysophosphatidylcholine, Phosphatidylcholine, Ceramide).
- Changes in carboxylic acids (Undecanedioic, Dodecanedioic acid) were observed, with implications for neuronal function and viral replication.
- ZIKV infection induced the secretion of pro-inflammatory cytokines (IL-6, TNF-α, IL-1β) and upregulation of CX3CR1.
Conclusions:
- Microglial metabolic reprogramming is a key feature of ZIKV infection.
- Specific metabolites altered by ZIKV play roles in neuroinflammation and potentially viral pathogenesis.
- These findings underscore the critical involvement of microglia and their metabolic state in central nervous system inflammation during ZIKV infection.
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