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Published on: September 29, 2017
Pathology of variant Creutzfeldt-Jakob disease
1CJD Surveillance Unit, University of Edinburgh, Scotland, UK.
Abstract:
Variant Creutzfeldt-Jakob disease (vCJD) is a novel prion disease in man which was first described in 1996 in the UK. There is substantial evidence to indicate that vCJD represents the effects of the bovine spongiform encephalopathy (BSE) agent in man. The neuropathology of vCJD is characterised by the florid plaque, composed of a central amyloid core with a fibrillary periphery, surrounded by a rim of spongiform change in an intact neuropil. Unique patterns of PrP accumulation in vCJD are revealed by immunocytochemistry in the cerebral and cerebellar cortices, the basal ganglia, thalamus and brainstem. The neuropathology of the thalamus and midbrain is also characterised by severe neuronal loss and gliosis. vCJD is distinct from other human prion diseases in that disease-associated PrP accumulates within follicular dendritic cells in lymphoid tissue, and consistently in peripheral sensory ganglia. All vCJD patients so far have been methionine homozygotes at codon 129 in the PrP gene. There is no evidence to indicate that cases of BSE infection have occurred in individuals in the UK who are MV or VV at codon 129 in the PrP gene. It is conceivable that BSE incubation periods in these groups may be longer than in methionine homozygotes, hence the precise numbers of future cases of vCJD are difficult to estimate at present.
Insights
Variant Creutzfeldt-Jakob disease (vCJD), linked to bovine spongiform encephalopathy (BSE), presents unique neuropathology. All identified cases are methionine homozygotes, suggesting genetic factors influence susceptibility to this novel prion disease.
Area of Science:
- Neuropathology
- Prion Diseases
- Epidemiology
Background:
- Variant Creutzfeldt-Jakob disease (vCJD) emerged in 1996, strongly linked to the bovine spongiform encephalopathy (BSE) agent in humans.
- vCJD is a novel human prion disease with distinct neuropathological features.
Purpose of the Study:
- To describe the neuropathology of vCJD.
- To investigate PrP accumulation patterns in vCJD.
- To analyze the role of PRNP codon 129 polymorphism in vCJD.
Main Methods:
- Neuropathological examination of vCJD cases.
- Immunocytochemistry to detect PrP deposition.
- Genotyping of PRNP codon 129.
Main Results:
- vCJD brains exhibit florid plaques and spongiform changes, with unique PrP accumulation in specific brain regions and peripheral tissues.
- Disease-associated PrP accumulates in lymphoid tissues and peripheral sensory ganglia.
- All vCJD patients analyzed were methionine homozygotes at PRNP codon 129; no BSE cases were identified in MV or VV individuals.
Conclusions:
- vCJD has a distinct neuropathological profile compared to other human prion diseases.
- The PRNP codon 129 methionine homozygote genotype appears to be a prerequisite for developing vCJD.
- Future vCJD case numbers are difficult to predict due to potential longer incubation periods in other genotypes.
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