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Monitoring Immune Cells Trafficking Fluorescent Prion Rods Hours after Intraperitoneal Infection
Published on: November 19, 2010
Monitoring immune cells trafficking fluorescent prion rods hours after intraperitoneal infection
Theodore E Johnson1, Brady A Michel, Crystal Meyerett
1Department of Microbiology, Immunology and Pathology, Colorado State University, USA.
Abstract:
Presence of an abnormal form a host-encoded prion protein (PrPC) that is protease resistant, pathologic and infectious characterizes prion diseases such as Chronic Wasting Disease (CWD) of cervids and scrapie in sheep. The Prion hypothesis asserts that this abnormal conformer constitutes most or all of the infectious prion. The role of the immune system in early events in peripheral prion pathogenesis has been convincingly demonstrated for CWD and scrapie. Transgenic and pharmacologic studies in mice revealed an important role of the Complement system in retaining and replicating prions early after infection. In vitro and in vivo studies have also observed prion retention by dendritic cells, although their role in trafficking remains unclear. Macrophages have similarly been implicated in early prion pathogenesis, but these studies have focused on events occurring weeks after infection. These prior studies also suffer from the problem of differentiating between endogenous PrP(C) and infectious prions. Here we describe a semiquantitative, unbiased approach for assessing prion uptake and trafficking from the inoculation site by immune cells recruited there. Aggregated prion rods were purified from infected brain homogenate by detergent solubilization of non-aggregated proteins and ultracentrifugation through a sucrose cushion. Polyacrylamide gel electrophoresis, coomassie blue staining and western blotting confirmed recovery of highly enriched prion rods in the pelleted fraction. Prion rods were fluorochrome-labeled then injected intraperitoneally into mice. Two hours later immune cells from peritoneal lavage fluid, spleen and mediastinal and mesenteric lymph nodes were assayed for prion rod retention and cell subsets identified by multicolor flow cytometry using markers for monocytes, neutrophils, dendritic cells, macrophages and B and T cells. This assay allows for the first time direct monitoring of immune cells acquiring and trafficking prions in vivo within hours after infection. This assay also clearly differentiates infectious, aggregated prions from PrPC normally expressed on host cells, which can be difficult and lead to data interpretation problems in other assay systems. This protocol can be adapted to other inoculation routes (oral, intravenous, intranervous and subcutaneous, e.g.) and antigens (conjugated beads, bacterial, viral and parasitic pathogens and proteins, egg) as well.
Insights
Researchers developed a new method to track prion uptake by immune cells within hours of infection. This technique differentiates infectious prions from normal host proteins, advancing prion disease research.
Area of Science:
- Neuroscience
- Immunology
- Biochemistry
Background:
- Prion diseases like CWD and scrapie involve abnormal prion protein conformers.
- The immune system plays a crucial role in early prion pathogenesis.
- Previous studies faced challenges differentiating infectious prions from normal PrPC.
Purpose of the Study:
- To develop a semiquantitative, unbiased method for assessing prion uptake and trafficking by immune cells.
- To directly monitor immune cell acquisition and trafficking of prions in vivo within hours of infection.
- To differentiate infectious prions from endogenous PrPC.
Main Methods:
- Purification of aggregated prion rods from infected brain homogenate.
- Fluorochrome-labeling of prion rods and intraperitoneal injection into mice.
- Assay of immune cells from peritoneal lavage, spleen, and lymph nodes using multicolor flow cytometry within two hours.
Main Results:
- Demonstrated direct monitoring of immune cells acquiring and trafficking prions in vivo within hours.
- Successfully differentiated infectious, aggregated prions from host PrPC.
- Established a protocol adaptable to various inoculation routes and antigens.
Conclusions:
- The developed assay provides a novel approach for studying early prion-immune cell interactions.
- This method overcomes limitations of previous assays in distinguishing infectious prions from PrPC.
- The protocol's adaptability offers broad applications in immunology and infectious disease research.

