Affiliation:
1. Laboratory of Veterinary Hygiene, Faculty of Veterinary Medicine, Graduate School of Infectious Diseases, Hokkaido University, Sapporo, Japan
2. Global Station for Zoonosis Control, Global Institute for Collaborative Research and Education, Hokkaido University, Sapporo, Japan
Abstract
ABSTRACT
In prion diseases, an abnormal isoform of prion protein (PrP
Sc
) accumulates in neurons, astrocytes, and microglia in the brains of animals affected by prions. Detailed analyses of PrP
Sc
-positive neurons and glial cells are required to clarify their pathophysiological roles in the disease. Here, we report a novel method for the detection of PrP
Sc
in neurons and glial cells from the brains of prion-infected mice by flow cytometry using PrP
Sc
-specific staining with monoclonal antibody (MAb) 132. The combination of PrP
Sc
staining and immunolabeling of neural cell markers clearly distinguished neurons, astrocytes, and microglia that were positive for PrP
Sc
from those that were PrP
Sc
negative. The flow cytometric analysis of PrP
Sc
revealed the appearance of PrP
Sc
-positive neurons, astrocytes, and microglia at 60 days after intracerebral prion inoculation, suggesting the presence of PrP
Sc
in the glial cells, as well as in neurons, from an early stage of infection. Moreover, the kinetic analysis of PrP
Sc
revealed a continuous increase in the proportion of PrP
Sc
-positive cells for all cell types with disease progression. Finally, we applied this method to isolate neurons, astrocytes, and microglia positive for PrP
Sc
from a prion-infected mouse brain by florescence-activated cell sorting. The method described here enables comprehensive analyses specific to PrP
Sc
-positive neurons, astrocytes, and microglia that will contribute to the understanding of the pathophysiological roles of neurons and glial cells in PrP
Sc
-associated pathogenesis.
IMPORTANCE
Although formation of PrP
Sc
in neurons is associated closely with neurodegeneration in prion diseases, the mechanism of neurodegeneration is not understood completely. On the other hand, recent studies proposed the important roles of glial cells in PrP
Sc
-associated pathogenesis, such as the intracerebral spread of PrP
Sc
and clearance of PrP
Sc
from the brain. Despite the great need for detailed analyses of PrP
Sc
-positive neurons and glial cells, methods available for cell type-specific analysis of PrP
Sc
have been limited thus far to microscopic observations. Here, we have established a novel high-throughput method for flow cytometric detection of PrP
Sc
in cells with more accurate quantitative performance. By applying this method, we succeeded in isolating PrP
Sc
-positive cells from the prion-infected mouse brains via fluorescence-activated cell sorting. This allows us to perform further detailed analysis specific to PrP
Sc
-positive neurons and glial cells for the clarification of pathological changes in neurons and pathophysiological roles of glial cells.
Funder
Ministry of Health, Labour and Welfare
MEXT | Japan Society for the Promotion of Science
Publisher
American Society for Microbiology
Subject
Virology,Insect Science,Immunology,Microbiology
Cited by
14 articles.
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