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Recent advances in the histo-molecular pathology of human prion disease
Simone Baiardi1, Marcello Rossi2, Sabina Capellari1,2
1Department of Biomedical and Neuromotor Sciences, University of Bologna, Bologna, Italy.
Abstract:
Prion diseases are progressive neurodegenerative disorders affecting humans and other mammalian species. The term prion, originally put forward to propose the concept that a protein could be infectious, refers to PrPSc , a misfolded isoform of the cellular prion protein (PrPC ) that represents the pathogenetic hallmark of these disorders. The discovery that other proteins characterized by misfolding and seeded aggregation can spread from cell to cell, similarly to PrPSc , has increased interest in prion diseases. Among neurodegenerative disorders, however, prion diseases distinguish themselves for the broader phenotypic spectrum, the fastest disease progression and the existence of infectious forms that can be transmitted through the exposure to diseased tissues via ingestion, injection or transplantation. The main clinicopathological phenotypes of human prion disease include Creutzfeldt-Jakob disease, by far the most common, fatal insomnia, variably protease-sensitive prionopathy, and Gerstmann-Sträussler-Scheinker disease. However, clinicopathological manifestations extend even beyond those predicted by this classification. Because of their transmissibility, the phenotypic diversity of prion diseases can also be propagated into syngenic hosts as prion strains with distinct characteristics, such as incubation period, pattern of PrPSc distribution and regional severity of histopathological changes in the brain. Increasing evidence indicates that different PrPSc conformers, forming distinct ordered aggregates, encipher the phenotypic variants related to prion strains. In this review, we summarize the most recent advances concerning the histo-molecular pathology of human prion disease focusing on the phenotypic spectrum of the disease including co-pathologies, the characterization of prion strains by experimental transmission and their correlation with the physicochemical properties of PrPSc aggregates.
Insights
Prion diseases are progressive neurodegenerative disorders. This review details human prion disease pathology, focusing on prion strains and their distinct characteristics, including incubation period and PrPSc distribution.
Area of Science:
- Neuroscience
- Pathology
- Molecular Biology
Background:
- Prion diseases are fatal neurodegenerative disorders caused by misfolded prion proteins (PrPSc).
- These diseases exhibit a broad phenotypic spectrum and rapid progression, distinguishing them from other neurodegenerative conditions.
- Prion diseases are transmissible, posing unique public health challenges.
Purpose of the Study:
- To review recent advances in the histo-molecular pathology of human prion diseases.
- To focus on the phenotypic spectrum, including co-pathologies.
- To discuss the characterization of prion strains and their correlation with PrPSc aggregate properties.
Main Methods:
- Review of current literature on prion disease pathology.
- Analysis of experimental transmission studies to characterize prion strains.
- Correlation of PrPSc physicochemical properties with phenotypic variations.
Main Results:
- Human prion diseases present a diverse range of clinicopathological phenotypes beyond established classifications.
- Prion strains, characterized by distinct incubation periods and PrPSc deposition patterns, can be propagated experimentally.
- Different PrPSc conformers, forming ordered aggregates, are associated with specific prion strain phenotypes.
Conclusions:
- Understanding the histo-molecular pathology and strain diversity is crucial for diagnosing and managing prion diseases.
- Further research into PrPSc conformers and their role in disease propagation is warranted.
- This review highlights the complexity of prion diseases and the need for continued investigation into their pathogenesis.
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