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Published on: February 20, 2018
Modulatory effects of the CCR5 antagonist maraviroc on microglial pro-inflammatory activation elicited by gp120
Lucia Lisi1, Antonella Tramutola, Andrea De Luca
1Institute of Pharmacology, Catholic University Medical School, Rome, Italy.
Abstract:
Despite important clinical benefits of the highly active antiretroviral therapy, neurological disorders affect approximately 50% of AIDS patients. In the brain, infected microglia release pro-inflammatory mediators as well as human immunodeficiency virus type 1 (HIV-1) proteins, like the envelope protein gp120, that sustain inflammation and mediate neuronal damage. Gp120 allows the virus entry in the host cells via binding to the CD4 receptor together with a specific co-receptor (CCR5/CXCR4). The antiretroviral drug maraviroc is a CCR5 receptor antagonist, approved for the treatment of HIV-experienced patients. By interfering with a chemokine receptor, highly expressed in microglia, maraviroc has the potential to modulate their activation during HIV-1 infection. To test this hypothesis, primary cultures of rat cortical microglia were activated by gp120. Gp120(CN54) , a protein derived by macrophage (M)-tropic viruses, showed strong pro-inflammatory action, thus it was used to test the effects of maraviroc. The latter displayed opposite effects, depending on whether or not interferon-γ (IFNγ) was also present in the system. IFNγ significantly enhanced gp120 proinflammatory activity, possibly via up-regulation of CCR5 receptor expression. In this experimental paradigm, maraviroc significantly increased microglial activation, thus suggesting that its chronic use can exacerbate neuronal pathology, especially in HIV-experienced patients with higher cerebral IFNγ levels.
Insights
Maraviroc, an HIV drug, may worsen brain inflammation in AIDS patients by increasing microglial activation, especially when interferon-gamma is present. This finding impacts neurological disorder treatment strategies.
Area of Science:
- Neuroscience
- Immunology
- Virology
Background:
- Neurological disorders affect 50% of AIDS patients despite antiretroviral therapy.
- HIV-1 infected microglia release inflammatory mediators and viral proteins (gp120) causing neuronal damage.
- Gp120 facilitates HIV entry by binding CD4 and co-receptors (CCR5/CXCR4).
Purpose of the Study:
- To investigate the effect of maraviroc, a CCR5 antagonist, on gp120-induced microglial activation.
- To determine the role of interferon-gamma (IFNγ) in modulating maraviroc's effects on microglia during HIV-1 infection.
Main Methods:
- Primary cultures of rat cortical microglia were activated with gp120 (CN54 strain).
- The effects of maraviroc were tested in the presence and absence of IFNγ.
- Microglial activation and inflammatory mediator release were assessed.
Main Results:
- Gp120 induced significant pro-inflammatory activity in microglia.
- IFNγ enhanced gp120's pro-inflammatory effects, potentially via CCR5 up-regulation.
- Maraviroc increased microglial activation in this experimental setup, particularly when IFNγ was present.
Conclusions:
- Maraviroc's effect on microglial activation is context-dependent, influenced by IFNγ levels.
- Chronic maraviroc use might exacerbate neuroinflammation and neuronal pathology in HIV patients with elevated cerebral IFNγ.
- Further research is needed to understand the clinical implications for HIV-associated neurological disorders.
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