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In Vivo Dynamics of Retinal Microglial Activation During Neurodegeneration: Confocal Ophthalmoscopic Imaging and Cell Morphometry in Mouse Glaucoma
Published on: May 11, 2015
Microglial activation varies in different models of Creutzfeldt-Jakob disease
1Section of Neuropathology, Yale School of Medicine, New Haven, Connecticut 06510, USA.
Abstract:
Progressive changes in host mRNA expression can illuminate crucial pathogenetic pathways in infectious disease. We examined general and specific approaches to mRNA expression in three rodent models of Creutzfeldt-Jakob disease (CJD). Each of these models displays distinctive neuropathology. Although mRNAs for the chemokine receptor CCR5, the lysosomal protease cathepsin S, and the pleiotropic cytokine transforming growth factor beta1 (TGF-beta1) were progressively upregulated in rodent CJD, the temporal patterns and peak magnitudes of each of these transcripts varied substantially among models. Cathepsin S and TGF-beta1 were elevated more than 15-fold in mice and rats infected with two different CJD strains, but not in CJD-infected hamsters. In rats, an early activation of microglial transcripts preceded obvious deposits of prion protein (PrP) amyloid. However, in each of the three CJD models, the upregulation of CCR5, cathepsin S, and TGF-beta1 was variable with respect to the onset of PrP pathology. These results show glial cell involvement varies as a consequence of the agent strain and species infected. Although neurons are generally assumed to be the primary sites for agent replication and abnormal PrP formation, microglia may be targeted by some agent strains. In such instances, microglia can both process PrP to become amyloid and can enhance neuronal destruction. Because microglia can participate in agent clearance, they may also act as chronic reservoirs of infectivity. Finally, the results here strongly suggest that TGF-beta1 can be an essential signal for amyloid deposition.
Insights
Host mRNA expression changes reveal Creutzfeldt-Jakob disease (CJD) pathways. Microglia involvement and transforming growth factor beta1 (TGF-beta1) signaling in prion disease progression vary by CJD strain and species.
Area of Science:
- Neuroscience
- Infectious Disease Research
- Molecular Biology
Background:
- Host mRNA expression patterns offer insights into infectious disease pathogenesis.
- Creutzfeldt-Jakob disease (CJD) research requires understanding strain and species-specific neuropathology.
Purpose of the Study:
- To investigate mRNA expression changes in three distinct rodent models of CJD.
- To analyze the temporal dynamics and magnitude of specific transcript upregulations across models.
Main Methods:
- Examined mRNA expression profiles in rodent models of CJD.
- Compared temporal patterns of CCR5, cathepsin S, and transforming growth factor beta1 (TGF-beta1) transcripts.
- Correlated transcript changes with prion protein (PrP) pathology onset.
Main Results:
- CCR5, cathepsin S, and TGF-beta1 mRNAs were progressively upregulated in CJD models, but with variable temporal patterns and magnitudes.
- Cathepsin S and TGF-beta1 showed significant elevation in mice and rats, but not hamsters.
- Microglial transcript activation preceded PrP amyloid deposition in rats, and glial involvement varied by agent strain and host species.
Conclusions:
- Glial cell involvement in CJD pathogenesis is influenced by agent strain and host species.
- Microglia may be targeted by certain CJD strains, potentially processing PrP and contributing to neuronal damage or acting as infectivity reservoirs.
- TGF-beta1 signaling is strongly implicated as a critical factor in amyloid deposition during CJD.

