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Intracerebroventricular and Intravascular Injection of Viral Particles and Fluorescent Microbeads into the Neonatal Brain
Published on: July 24, 2016
Cytomegalovirus initiates infection selectively from high-level β1 integrin-expressing cells in the brain
Hideya Kawasaki1, Isao Kosugi1, Makiko Sakao-Suzuki2
1Department of Regenerative and Infectious Pathology, Hamamatsu University School of Medicine, Hamamatsu, Japan.
Abstract:
Cytomegalovirus (CMV) is a prevalent pathogen in intrauterine infections that causes congenital anomalies such as CMV encephalitis, which is characterized by the focal areas of reactive gliosis, reactive mononuclear cells, microglial nodules, and ventriculoencephalitis. To elucidate the mechanisms of CMV susceptibility in the developing brain, cell tropism and the infectious dynamics of CMV infection were investigated. We evaluated intraventricular and intravascular infections from the perspective of the distribution of CMV and its receptor (β1 integrin) in the earliest phase of infection. Murine CMV (MCMV) immediate early 1-positive cells were colocalized mainly with meninges and choroid plexus (after intraventricular infection) or with endothelial cells and pericytes (after intravascular infection). Using green fluorescent protein-expressing recombinant MCMV particles and fluorescent microbeads (100 to 300 nm), we revealed that CMV particle size is the primary factor determining the initial CMV distribution. β1 Integrin inhibition using a shRNA and functional blocking antibody significantly reduced MCMV infection. IHC analysis, flow cytometric, and brain slice analyses strongly support that high-level β1 integrin-expressing cells (eg, endothelial cells, pericytes, meninges, choroid plexus, and neural stem progenitor cells) are the first targets of MCMV. Therefore, our data demonstrate that the initial distributions of MCMV particles and β1 integrin determine the distinct pattern of infection in the brain in the acute phase.
Insights
Cytomegalovirus (CMV) particle size dictates initial brain distribution. Targeting β1 integrin-expressing cells, like endothelial cells, is key to understanding congenital CMV infection mechanisms.
Area of Science:
- Neurovirology
- Developmental Neuroscience
- Infectious Diseases
Background:
- Congenital Cytomegalovirus (CMV) infection is a leading cause of birth defects.
- CMV encephalitis involves specific neuropathological changes in the developing brain.
- Understanding CMV's early cell tropism is crucial for preventing congenital anomalies.
Purpose of the Study:
- To investigate the mechanisms of CMV susceptibility in the developing brain.
- To determine the cell tropism and infectious dynamics of CMV.
- To elucidate the role of β1 integrin in CMV brain infection.
Main Methods:
- Evaluated intraventricular and intravascular murine CMV (MCMV) infections.
- Utilized fluorescently labeled MCMV and microbeads to assess particle distribution.
- Assessed β1 integrin expression and inhibited its function using shRNA and blocking antibodies.
- Performed immunohistochemistry, flow cytometry, and brain slice analyses.
Main Results:
- CMV particle size was the primary determinant of initial brain distribution.
- MCMV colocalized with meninges, choroid plexus, endothelial cells, and pericytes.
- High β1 integrin-expressing cells, including neural stem progenitor cells, were identified as initial MCMV targets.
- β1 Integrin inhibition significantly reduced MCMV infection.
Conclusions:
- Initial MCMV distribution is governed by particle size and β1 integrin expression.
- Endothelial cells, pericytes, meninges, choroid plexus, and neural stem progenitor cells are early targets of MCMV.
- These findings illuminate the distinct patterns of acute CMV brain infection.
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