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Kappa-opioid receptor ligands inhibit cocaine-induced HIV-1 expression in microglial cells
Genya Gekker1, Shuxian Hu, Mark P Wentland
1Neuroimmunology Research Laboratory, Minneapolis Medical Research Foundation and Department of Medicine, University of Minnesota Medical School, USA.
Abstract:
Cocaine abuse has been implicated as a cofactor in human immunodeficiency virus (HIV)-1-associated dementia (HAD). In this study, we tested the hypothesis that exposure of microglial cells, the resident macrophages of the brain, to cocaine would potentiate HIV-1 expression. Because kappa-opioid receptor (KOR) agonists have been shown to suppress neurochemical and neurobehavioral responses to cocaine and to inhibit HIV-1 expression in microglial cell cultures, we also postulated that KOR ligands would inhibit cocaine-induced potentiation of HIV-1 expression. Human microglial cells were infected with HIV-1(SF162), an R5 isolate, and viral expression was quantified by measurement of p24 antigen in culture supernatants. Treatment of microglia with the KOR agonists trans-(+/-)-3,4-dichlor-N-methyl-N-(2[1-pyrrolidnyl])benzeneacetamide methanesulfonate and 8-carboxamidocyclazocine inhibited viral expression (maximal suppression of 42 and 48%, respectively). Consistent with the hypotheses, treatment of microglia with cocaine promoted HIV-1 expression (maximal enhancement of 54%), and pretreatment of microglia with these KOR agonists as well as with the KOR-selective antagonist nor-binaltorphimine abrogated cocaine-induced potentiation of viral expression. Results of flow cytometry studies suggested that the mechanism whereby KOR ligands inhibit cocaine's stimulatory effect on viral expression involves the suppression of cocaine-induced activation of extracellular signal-regulated kinase1/2, thereby blunting cocaine-enhanced up-regulation of the HIV-1 entry chemokine coreceptor CCR5. The findings of this study suggest that in addition to its neurotoxic effects, cocaine could foster development of HAD by potentiating viral expression in the brain and that this phenomenon is inhibited by KOR ligands.
Insights
Cocaine use may worsen HIV-1 associated dementia (HAD) by increasing virus expression in brain cells. Kappa-opioid receptor (KOR) ligands can block this effect, suggesting a potential therapeutic target for HAD.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Cocaine abuse is linked to HIV-1 associated dementia (HAD).
- Microglia, the brain's immune cells, play a role in HAD pathogenesis.
- Kappa-opioid receptor (KOR) agonists show potential in suppressing HIV-1 expression.
Purpose of the Study:
- To investigate if cocaine exposure potentiates HIV-1 expression in microglial cells.
- To determine if KOR ligands can inhibit cocaine-induced potentiation of HIV-1 expression.
Main Methods:
- Human microglial cells were infected with HIV-1(SF162).
- Viral expression was quantified by measuring p24 antigen.
- Cells were treated with cocaine, KOR agonists, and KOR antagonists.
Main Results:
- Cocaine exposure significantly enhanced HIV-1 expression in microglial cells.
- KOR agonists inhibited HIV-1 expression independently.
- KOR ligands abrogated cocaine-induced potentiation of viral expression.
- KOR ligands suppressed cocaine-induced activation of ERK1/2, reducing CCR5 upregulation.
Conclusions:
- Cocaine may foster HAD development by increasing brain viral expression.
- KOR ligands show promise in inhibiting cocaine's effect on HIV-1 expression.
- Targeting KOR pathways could be a strategy for managing HAD.
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