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Neuropathogenesis of central nervous system HIV-1 infection
1Department of Neurology, University of Pennsylvania Medical Center, Room 280C, Clinical Research Building, 415 Curie Boulevard, Philadelphia, PA 19104-6140, USA. kolsond@mail.med.upenn.edu
Abstract:
Neuronal damage and death are consistent pathologic findings in the brains of patients with ADC, and multiple cell model systems have demonstrated neurotoxicity through the effects of HIV-1 infection in macrophages and microglia. Brain MRI studies (1H-MRS) indicate that reversible neuronal cell dysfunction occurs early during the course of HIV-1 infection, long before overt symptoms of ADC appear. Epidemiologic studies suggest that a high viral load in the CNS is a major risk factor for ADC and that HAART may significantly reduce, but not eliminate, the risk of developing ADC. Targeted adjunctive therapies administered early are likely necessary to maximize CNS protection against HIV, and rational approaches to such therapy are rapidly evolving through in vitro analysis of the mechanisms of HIV-associated neurotoxicity. Soluble factors released by infected cells may directly or indirectly damage neurons and induce apoptosis at the level of NMDA subtype of glutamate receptors, and NMDA receptor antagonists represent a major therapeutic option currently under intense clinical investigation. Likewise, drugs with antioxidant or free radical scavenging effects offer another rational approach to adjunctive therapy and are also under intense clinical scrutiny. Finally, agents that inhibit neuronal death-signaling pathways (e.g., p38 MAPK inhibitors) and that stimulate cell survival pathways (e.g., Akt/PKB) may represent the next investigational step in designing anti-ADC therapies.
Insights
HIV-1 infection causes brain damage in patients with AIDS dementia complex (ADC). Early intervention with targeted therapies, like NMDA receptor antagonists and antioxidants, is crucial for CNS protection.
Area of Science:
- Neuroscience
- Infectious Diseases
- Pharmacology
Background:
- Neuronal damage and death are hallmarks of AIDS dementia complex (ADC).
- HIV-1 infection in macrophages and microglia causes neurotoxicity.
- Early, reversible neuronal dysfunction occurs before overt ADC symptoms.
Purpose of the Study:
- To review mechanisms of HIV-associated neurotoxicity.
- To discuss rational approaches for adjunctive therapies against ADC.
- To highlight potential therapeutic targets for CNS protection in HIV-1 infection.
Main Methods:
- Review of in vitro studies on HIV-associated neurotoxicity.
- Analysis of epidemiological data on ADC risk factors.
- Examination of clinical investigations for ADC therapies.
Main Results:
- High central nervous system (CNS) viral load is an ADC risk factor.
- Highly active antiretroviral therapy (HAART) reduces, but doesn't eliminate, ADC risk.
- Soluble factors from infected cells damage neurons via NMDA receptors.
Conclusions:
- Targeted adjunctive therapies are essential for early CNS protection against HIV.
- NMDA receptor antagonists, antioxidants, and signaling pathway modulators are promising therapeutic options.
- Further research into cell survival pathways is needed for next-generation ADC therapies.