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Forward Genetics Screens Using Macrophages to Identify Toxoplasma gondii Genes Important for Resistance to IFN-γ-Dependent Cell Autonomous Immunity
Published on: March 12, 2015
Resveratrol modulates inflammatory gene expression in Toxoplasma gondii-infected microglia and shows structurally
Bianca Fagan Bissacotti1, Priscila Marquezan Copetti1, Amanda Kolinski Machado2
1Graduate Program in Biological Sciences: Toxicological Biochemistry, Department of Biochemistry and Molecular Biology, Federal University of Santa Maria (UFSM), Santa Maria, RS, Brazil.
Abstract:
Microglia represent one of the mechanisms by which the parasite enters in the brain and contributes to inflammatory responses during infection. P2X7 receptor, NLRP3 inflammasome, and other inflammatory markers are elevated in toxoplasmosis, while resveratrol has demonstrated anti-inflammatory and antiparasitic potential. This study investigated resveratrol on the P2X7/NLRP3 pathway (in vitro) and explored potential interactions with ROP18 and AMA1 proteins of Toxoplasma gondii (in silico). BV-2 microglial cells were exposed to different RH strain parasite-to-cell ratios and infection times to determine susceptibility. Cells were infected (3:1 - cell:parasite, 3 h) and treated with resveratrol (0.1-50 μM, 2 h). DNA release, reactive oxygen species, nitric oxide, cell-cycle distribution, and expression of inflammatory genes, including P2X7 and NLRP3, were assessed. In silico analyses predicted potential interactions between resveratrol and ROP18 and AMA1. BV-2 cells were highly susceptible to infection, with infection-associated cellular alterations varying according to parasite concentration and exposure time, as reflected by NO levels and monolayer disruption. Resveratrol treatment was associated with partial restoration of metabolic activity, reduced ROS and NO levels, modulation of cell-cycle distribution, decreased expression of IL-1β, TNF-α, and IFN-γ, and increased IL-10 expression. Infection-induced upregulation of NLRP3, Caspase-1, and purinergic receptors (P2X7, A2A) at the transcriptional level was attenuated by resveratrol, especially at 1 and 10 μM. In silico analyses suggest structurally plausible interactions between resveratrol and the ROP18 and AMA1 proteins. These findings suggest that RSV may represent a promising candidate for modulation of inflammation-related transcriptional responses during neurotoxoplasmosis.
Insights
Resveratrol (RSV) may help combat neurotoxoplasmosis by reducing inflammation and parasite effects. This study shows RSV modulates key inflammatory pathways and may interact with parasite proteins.
Area of Science:
- Neuroimmunology
- Parasitology
- Pharmacology
Background:
- Microglia are key in brain parasite entry and inflammation during toxoplasmosis.
- Elevated P2X7 receptor and NLRP3 inflammasome are observed in toxoplasmosis.
- Resveratrol (RSV) exhibits anti-inflammatory and antiparasitic properties.
Purpose of the Study:
- Investigate RSV's effect on the P2X7/NLRP3 pathway in microglia.
- Explore potential interactions between RSV and Toxoplasma gondii proteins (ROP18, AMA1) in silico.
- Assess RSV's therapeutic potential for neurotoxoplasmosis.
Main Methods:
- In vitro study using BV-2 microglial cells infected with Toxoplasma gondii.
- Treatment with varying concentrations of resveratrol.
- Assessment of cellular responses: DNA release, ROS, NO, cell cycle, and inflammatory gene expression (P2X7, NLRP3, IL-1β, TNF-α, IFN-γ, IL-10).
- In silico analysis for RSV-ROP18 and RSV-AMA1 interactions.
Main Results:
- BV-2 cells showed high susceptibility to infection, with dose- and time-dependent alterations.
- Resveratrol partially restored metabolic activity, reduced ROS/NO, modulated cell cycle, and altered cytokine profiles (decreased IL-1β, TNF-α, IFN-γ; increased IL-10).
- Resveratrol attenuated infection-induced upregulation of NLRP3, Caspase-1, P2X7, and A2A.
- In silico analysis predicted plausible interactions between RSV and T. gondii ROP18 and AMA1 proteins.
Conclusions:
- Resveratrol demonstrates significant immunomodulatory effects on microglial inflammatory responses in neurotoxoplasmosis.
- RSV may act by downregulating the P2X7/NLRP3 inflammasome pathway.
- RSV's potential interaction with parasite proteins warrants further investigation for therapeutic development against neurotoxoplasmosis.

