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Adipose-Derived Mesenchymal Stromal Cells Co-Cultured with Primary Mixed Glia to Reduce Prion-Induced Inflammation
Published on: August 11, 2023
Small-ruminant lentivirus enhances PrPSc accumulation in cultured sheep microglial cells
James B Stanton1, Donald P Knowles, Katherine I O'Rourke
1Department of Veterinary Microbiology and Pathology, Washington State University, Pullman, WA 99164-7040, USA.
Abstract:
Sheep scrapie is the prototypical transmissible spongiform encephalopathy (prion disease), which has a fundamental pathogenesis involving conversion of normal cellular prion protein (PrP(C) [C superscript stands for cellular]) to disease-associated prion protein (PrP(Sc) [Sc superscript stands for sheep scrapie]). Sheep microglial cell cultures, derived from a prnp 136VV/171QQ near-term fetal brain, were developed to study sheep scrapie in the natural host and to investigate potential cofactors in the prion conversion process. Two culture systems, a primary cell culture and a cell line transformed with the large T antigen of simian virus 40, were developed, and both were identified as microglial in origin as indicated by expression of several microglial phenotype markers. Following exposure to PrP(Sc), sheep microglial cells demonstrated relatively low levels (transformed cell line) to high levels (primary cell line) of PrP(Sc) accumulation over time. The accumulated PrP(Sc) demonstrated protease resistance, an inferred beta-sheet conformation (as determined by a commercial enzyme-linked immunosorbent assay), specific inhibition by anti-PrP antibodies, and was transmissible in a dose-dependent manner. Primary microglia coinfected with a small-ruminant lentivirus (caprine arthritis encephalitis virus-Cork strain) and PrP(Sc) demonstrated an approximately twofold increase in PrP(Sc) accumulation compared to that of primary microglia infected with PrP(Sc) alone. The results demonstrate the in vitro utility of PrP(Sc)-permissive sheep microglial cells in investigating the biology of natural prion diseases and show that small-ruminant lentiviruses enhance prion conversion in cultured sheep microglia.
Insights
Researchers developed sheep microglial cell cultures to study sheep scrapie (prion disease). These cells accumulate disease-associated prion protein (PrPSc) and can be used to investigate cofactors like lentiviruses that enhance prion conversion.
Area of Science:
- Neuroscience
- Veterinary Medicine
- Infectious Diseases
Background:
- Sheep scrapie is a transmissible spongiform encephalopathy caused by prion protein conversion.
- Understanding prion disease pathogenesis requires studying the natural host.
- Sheep microglial cells are crucial immune cells in the brain.
Purpose of the Study:
- To develop and characterize sheep microglial cell cultures for studying sheep scrapie.
- To investigate the accumulation and properties of disease-associated prion protein (PrPSc) in these cells.
- To explore the role of cofactors, such as small-ruminant lentiviruses, in prion conversion.
Main Methods:
- Established primary and transformed sheep microglial cell cultures.
- Exposed cultures to PrPSc and monitored its accumulation.
- Characterized accumulated PrPSc for protease resistance and conformation.
- Assessed PrPSc transmissibility and the effect of coinfection with caprine arthritis encephalitis virus.
Main Results:
- Sheep microglial cells, both primary and transformed, accumulated PrPSc.
- Accumulated PrPSc exhibited protease resistance and was transmissible.
- Primary microglia showed higher PrPSc accumulation than transformed cells.
- Coinfection with a lentivirus approximately doubled PrPSc accumulation in primary microglia.
Conclusions:
- Sheep microglial cell cultures are valuable tools for in vitro studies of natural prion diseases.
- Small-ruminant lentiviruses can enhance prion conversion in cultured sheep microglia.
- These findings advance the understanding of sheep scrapie pathogenesis and potential cofactor interactions.
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