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Published on: February 14, 2025
Clinical update of Jakob-Creutzfeldt disease
Mee-Ohk Kim1, Michael D Geschwind
1Memory and Aging Center, Department of Neurology, University of California San Francisco, San Francisco, California, USA.
Purpose Of Review:
The present review discusses recent clinical data on diagnosis, new forms, and treatment of human prion diseases, and briefly summarizes research suggesting prion-like mechanisms in other neurodegenerative diseases.
Recent Findings:
When proper sequences are performed, MRI has high diagnostic utility in prion disease, but there are issues with interpretation of images. The spectrum of MRI's utility for diagnosis and understanding human prion disease is still being explored. Two recent diffusion tensor imaging studies quantified changes in the gray and white matter in sporadic Jakob-Creutzfeldt disease, with unexpected results. The diagnostic utility of cerebrospinal fluid biomarkers has been controversial. A few studies showed that amplification methods can detect prions in either cerebrospinal fluid, olfactory epithelium, blood and/or urine in various human prion diseases. Additional cases of variably protease-sensitive prionopathy have led to a broader understanding of this novel sporadic prion disease. A few new mutations causing genetic prion disease, one with a very atypical presentation, have been identified. Although recent human prion disease treatment trials did not show benefit, they have improved our understanding, and led to better quantification, of the progression of these disorders. Lastly, we briefly summarize the increasing evidence that many nonprion neurodegenerative proteinopathies might spread in the brain by a prion-like mechanism.
Summary:
New prion detection methods appear promising, but need to be replicated with larger sample sizes. Identification of novel forms of human prion disease might better elucidate the full spectrum of prion diseases and expand our understanding of their pathogenesis.
Insights
Recent advancements in diagnosing and treating human prion diseases are reviewed. New prion detection methods show promise, and prion-like mechanisms may be involved in other neurodegenerative diseases.
Area of Science:
- Neuroscience
- Neurology
- Pathology
Background:
- Human prion diseases are fatal neurodegenerative disorders.
- Understanding their diagnosis, new forms, and treatment is crucial.
- Prion-like mechanisms are increasingly implicated in other neurodegenerative conditions.
Purpose of the Study:
- To review recent clinical data on human prion diseases.
- To discuss diagnostic advancements and novel disease forms.
- To summarize research on prion-like mechanisms in other neurodegenerative diseases.
Main Methods:
- Review of recent clinical data and research publications.
- Analysis of diagnostic utility of MRI and cerebrospinal fluid biomarkers.
- Evaluation of prion detection amplification methods and genetic studies.
Main Results:
- MRI shows diagnostic utility but faces interpretation challenges.
- Cerebrospinal fluid biomarker utility is debated; amplification methods show promise.
- New forms of prion disease and genetic mutations have been identified.
- Treatment trials yielded no benefit but improved understanding of disease progression.
- Evidence suggests prion-like mechanisms in nonprion neurodegenerative proteinopathies.
Conclusions:
- Novel prion detection methods require larger validation studies.
- Identifying new human prion disease forms enhances understanding of pathogenesis.
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