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A Thin-skull Window Technique for Chronic Two-photon In vivo Imaging of Murine Microglia in Models of Neuroinflammation
Published on: September 19, 2010
HIV-infected microglia mediate cathepsin B-induced neurotoxicity
Frances Zenón1, Yisel Cantres-Rosario1, Radhika Adiga2
1Department of Microbiology and Medical Zoology, and Specialized Neuroscience Program in NeuroAIDS, University of Puerto Rico Medical Sciences Campus, San Juan, Puerto Rico.
Abstract:
HIV-1-infected mononuclear phagocytes release soluble factors that affect the homeostasis in tissue. HIV-1 can prompt metabolic encephalopathy with the addition of neuronal dysfunction and apoptosis. Recently, we reported that HIV-1 enhances the expression and secretion of bioactive cathepsin B in monocyte-derived macrophages, ultimately contributing to neuronal apoptosis. In this research, we asked if microglia respond to HIV infection similarly by modifying the expression, secretion, and neurotoxic potential of cathepsin B and determined the in vivo relevance of these findings. HIV-1ADA-infected human primary microglia and CHME-5 microglia cell line were assessed for expression and activity of cathepsin B, its inhibitors, cystatins B and C, and the neurotoxicity associated with these changes. Human primary neurons were exposed to supernatants from HIV-infected and uninfected microglia in the presence of cathepsin B inhibitors and apoptosis was assessed by TUNEL. Microglial expression of cathepsin B was validated in brain tissue from HIV encephalitis (HIVE) patients. HIV-infected microglia secreted significantly greater levels of cathepsin B, cystatin B, and cystatin C compared to uninfected cells. Increased apoptosis was observed in neurons exposed to supernatants from HIV-1 infected microglia at day 12 post-infection. The cathepsin B inhibitor CA-074 and cathepsin B antibody prevented neuronal apoptosis. Increased microglia-derived cathepsin B, cystatin B, and cystatin C and caspase-3+ neurons were detected in HIVE brains compared to controls. Our results suggest that HIV-1-induced cathepsin B production in microglia contributes to neuronal apoptosis and may be an important factor in neuronal death associated with HIVE.
Insights
Human immunodeficiency virus type 1 (HIV-1) infection of microglia increases cathepsin B release, leading to neuronal apoptosis. This suggests HIV-1-induced cathepsin B contributes to neuronal death in HIV encephalitis (HIVE).
Area of Science:
- Neuroscience
- Immunology
- Virology
Background:
- Mononuclear phagocytes infected with human immunodeficiency virus type 1 (HIV-1) release factors impacting tissue homeostasis.
- HIV-1 infection can cause metabolic encephalopathy, neuronal dysfunction, and apoptosis.
- Previous research indicated HIV-1 enhances cathepsin B expression and secretion in macrophages, contributing to neuronal apoptosis.
Purpose of the Study:
- To investigate if microglia respond to HIV-1 infection similarly to macrophages by altering cathepsin B expression, secretion, and neurotoxic potential.
- To determine the in vivo relevance of microglial cathepsin B changes in HIV-1 infection.
Main Methods:
- Assessed cathepsin B expression, activity, and inhibitors (cystatins B and C) in HIV-1ADA-infected human primary microglia and CHME-5 cells.
- Exposed human primary neurons to supernatants from HIV-infected and uninfected microglia, with and without cathepsin B inhibitors.
- Assessed neuronal apoptosis using TUNEL assay and validated microglial cathepsin B expression in HIV encephalitis (HIVE) patient brain tissue.
Main Results:
- HIV-1-infected microglia exhibited significantly higher secretion of cathepsin B, cystatin B, and cystatin C compared to uninfected cells.
- Neurons exposed to supernatants from HIV-1-infected microglia showed increased apoptosis at day 12 post-infection.
- Cathepsin B inhibition (CA-074 and antibody) prevented neuronal apoptosis.
- Elevated microglia-derived cathepsin B, cystatin B, cystatin C, and caspase-3+ neurons were observed in HIVE brains.
Conclusions:
- HIV-1-induced cathepsin B production in microglia contributes to neuronal apoptosis.
- Microglial cathepsin B may be a significant factor in neuronal death associated with HIV encephalitis (HIVE).

